Found 357 chains in Knotted chains table. Displaying 151 - 300. Applied filters: Probabilistic

Search results query: topological notation: K +31

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#pdbid|chain|deposition date|is S/K-not|(slip)knot types;
      
  7pri|AAA|2023-06-28|K|+3.1;
  8axz|A|2022-10-17|K|+3.1;
  7plf|AAA|2022-09-14|K|+3.1;
  7nh8|AAA|2022-07-27|K|+3.1;
  7lnh|A|2022-05-16|K|+3.1;
  7edc|A|2022-05-15|K|+3.1;
  7e3t|A|2022-05-11|K|+3.1;
  7e3s|A|2022-05-11|K|+3.1;
  7e3r|A|2022-05-11|K|+3.1;
  7e3q|A|2022-05-11|K|+3.1;
  5nfj|A|2022-05-07|K|+3.1;
  7loo|A|2021-12-10|K|+3.1;
  7d51|A|2021-11-19|K|+3.1;
  7cww|A|2021-11-18|K|+3.1;
  7onu|F|2021-10-06|K|+3.1;
  7ock|B|2021-07-28|K|+3.1;
  7mys|A|2021-06-21|K|+3.1;
  7myq|A|2021-06-21|K|+3.1;
  6jki|A|2021-06-08|K|+3.1;
  6jof|A|2021-06-07|K|+3.1;
  6joe|A|2021-06-07|K|+3.1;
  6qow|A|2021-05-27|K|+3.1;
  6qrb|A|2021-05-27|K|+3.1;
  6qoe|A|2021-05-27|K|+3.1;
  6qqy|A|2021-05-27|K|+3.1;
  6nw7|A|2021-05-27|K|+3.1;
  2fg7|C|2021-05-10|K|+3.1;
  1ipa|A|2021-04-19|K|+3.1;
  6uev|A|2019-10-17|K|+3.1;
  6qrd|A|2019-10-16|K|+3.1;
  6qrf|A|2019-10-16|K|+3.1;
  6qrc|A|2019-10-16|K|+3.1;
  6qqq|A|2019-10-16|K|+3.1;
  6qra|A|2019-10-16|K|+3.1;
  6qqr|A|2019-10-16|K|+3.1;
  6qre|A|2019-10-16|K|+3.1;
  6qrg|A|2019-10-16|K|+3.1;
  6qr0|A|2019-10-16|K|+3.1;
  6qr1|A|2019-10-16|K|+3.1;
  6qqt|A|2019-10-16|K|+3.1;
  6qr3|A|2019-10-16|K|+3.1;
  6qqv|A|2019-10-16|K|+3.1;
  6qr2|A|2019-10-16|K|+3.1;
  6qqw|A|2019-10-16|K|+3.1;
  6qqz|A|2019-10-16|K|+3.1;
  6ac6|A|2019-09-16|K|+3.1;
  6rxz|CN|2019-09-09|K|+3.1;
  6rxy|CN|2019-09-08|K|+3.1;
  6rxx|CN|2019-09-07|K|+3.1;
  6rxv|CN|2019-09-07|K|+3.1;
  6rxt|CN|2019-09-07|K|+3.1;
  6afk|A|2019-09-06|K|+3.1;
  4v7h|BE|2018-09-28|K|+3.1;
  4cnd|B|2018-09-16|K|+3.1;
  4cne|B|2018-09-16|K|+3.1;
  4cnf|B|2018-09-16|K|+3.1;
  4cng|B|2018-09-16|K|+3.1;
  6ems|A|2018-09-14|K|+3.1;
  5vm8|A|2018-09-13|K|+3.1;
  6emt|A|2018-09-13|K|+3.1;
  6emv|A|2018-09-13|K|+3.1;
  5a19|A|2018-09-12|K|+3.1;
  1cng|A|2018-09-12|K|+3.1;
  3mhl|A|2018-09-12|K|+3.1;
  3m5e|A|2018-09-12|K|+3.1;
  3m40|A|2018-09-12|K|+3.1;
  3m3x|A|2018-09-12|K|+3.1;
  3m67|A|2018-09-12|K|+3.1;
  3m98|A|2018-09-12|K|+3.1;
  3m2n|A|2018-09-12|K|+3.1;
  3mhm|A|2018-09-12|K|+3.1;
  3m96|A|2018-09-12|K|+3.1;
  3po6|A|2018-09-12|K|+3.1;
  1hva|A|2018-09-12|K|+3.1;
  2w2j|A|2018-09-12|K|+3.1;
  3bet|A|2018-09-12|K|+3.1;
  3caj|A|2018-09-12|K|+3.1;
  3ibu|A|2018-09-12|K|+3.1;
  3ibn|A|2018-09-12|K|+3.1;
  3ibl|A|2018-09-12|K|+3.1;
  5dsq|A|2018-09-12|K|+3.1;
  5dso|A|2018-09-12|K|+3.1;
  1fsn|A|2018-09-12|K|+3.1;
  2cbe|A|2018-09-12|K|+3.1;
  3rz5|A|2018-09-12|K|+3.1;
  3rz7|A|2018-09-12|K|+3.1;
  3s76|A|2018-09-12|K|+3.1;
  1zsa|A|2018-09-12|K|+3.1;
  1cnh|A|2018-09-12|K|+3.1;
  4twm|A|2018-09-12|K|+3.1;
  4twl|A|2018-09-12|K|+3.1;
  5a1g|A|2018-09-12|K|+3.1;
  5dsr|A|2018-09-06|K|+3.1;
  1j85|A|2018-08-14|K|+3.1;
  6emu|A|2018-07-22|K|+3.1;
  5y2r|A|2018-02-14|K|+3.1;
  5y2s|A|2018-02-14|K|+3.1;
  5msb|A|2018-01-17|K|+3.1;
  5nxg|A|2018-01-17|K|+3.1;
  5nxi|A|2018-01-17|K|+3.1;
  5nxo|A|2018-01-17|K|+3.1;
  5nxp|A|2018-01-17|K|+3.1;
  5nxv|A|2018-01-17|K|+3.1;
  5nxw|A|2018-01-17|K|+3.1;
  5ny1|A|2018-01-17|K|+3.1;
  5ny3|A|2018-01-17|K|+3.1;
  5ny6|A|2018-01-17|K|+3.1;
  5nya|A|2018-01-17|K|+3.1;
  5yud|A|2018-01-03|K|+3.1;
  5wyr|A|2017-12-20|K|+3.1;
  5wyq|A|2017-12-20|K|+3.1;
  5m78|A|2017-12-20|K|+3.1;
  5o95|A|2017-11-08|K|+3.1;
  5o96|A|2017-11-08|K|+3.1;
  5oql|e|2017-10-11|K|+3.1;
  5tv3|A|2017-09-20|K|+3.1;
  5t75|A|2017-09-14|K|+3.1;
  5tt8|A|2017-09-13|K|+3.1;
  5l0z|A|2017-08-28|K|+3.1;
  5kzk|A|2017-08-28|K|+3.1;
  5ku6|A|2017-08-28|K|+3.1;
  5lle|A|2017-08-28|K|+3.1;
  5llg|A|2017-08-28|K|+3.1;
  5llo|A|2017-08-28|K|+3.1;
  5lln|A|2017-08-28|K|+3.1;
  5llp|A|2017-08-28|K|+3.1;
  5gra|A|2017-06-21|K|+3.1;
  5twj|A|2017-05-06|K|+3.1;
  5jnc|A|2017-05-04|K|+3.1;
  5twk|A|2017-05-03|K|+3.1;
  5thj|A|2017-05-03|K|+3.1;
  5jn8|A|2017-05-03|K|+3.1;
  5jna|A|2017-05-03|K|+3.1;
  5jn3|A|2017-05-03|K|+3.1;
  5wyk|E1|2017-04-07|K|+3.1;
  5ipz|A|2017-03-29|K|+3.1;
  5l6k|A|2017-03-02|K|+3.1;
  5sz7|A|2017-02-06|K|+3.1;
  5sz0|A|2017-02-05|K|+3.1;
  5sz1|A|2017-02-05|K|+3.1;
  5sz2|A|2017-02-05|K|+3.1;
  5sz3|A|2017-02-05|K|+3.1;
  5sz4|A|2017-02-05|K|+3.1;
  5h5f|A|2017-01-23|K|+3.1;
  5h5e|A|2017-01-23|K|+3.1;
  5jir|A|2016-11-27|K|+3.1;
  5gm8|A|2016-10-28|K|+3.1;
  5gmc|A|2016-10-28|K|+3.1;
  5gmb|A|2016-10-28|K|+3.1;
  5t8s|A|2016-10-03|K|+3.1;
  5t8t|A|2016-10-03|K|+3.1;
  5drs|A|2016-09-29|K|+3.1;
  5cjl|A|2016-09-28|K|+3.1;
  5dog|A|2016-09-28|K|+3.1;
  5doh|A|2016-09-28|K|+3.1;
  5e5r|A|2016-08-31|K|+3.1;
  5jpq|e|2016-07-29|K|+3.1;
  5co4|A|2016-07-20|K|+3.1;
  5g03|A|2016-05-26|K|+3.1;
  5hwy|A|2016-05-22|K|+3.1;
  5apg|A|2016-04-27|K|+3.1;
  5ap8|A|2016-04-27|K|+3.1;
  4yqt|A|2016-03-16|K|+3.1;
  4yqs|A|2016-03-16|K|+3.1;
  4yqr|A|2016-03-16|K|+3.1;
  4ypx|A|2016-03-16|K|+3.1;
  5a1i|A|2016-03-10|K|+3.1;
  4x3l|A|2016-01-22|K|+3.1;
  5fai|A|2016-01-21|K|+3.1;
  5c77|A|2016-01-14|K|+3.1;
  5c74|A|2016-01-14|K|+3.1;
  5a7y|A|2016-01-13|K|+3.1;
  5a7z|A|2016-01-13|K|+3.1;
  5a7t|A|2016-01-13|K|+3.1;
  4yvk|A|2015-12-25|K|+3.1;
  4yvj|A|2015-12-25|K|+3.1;
  4yvi|A|2015-12-25|K|+3.1;
  4yvh|A|2015-12-25|K|+3.1;
  4yvg|A|2015-12-25|K|+3.1;
  4xbo|A|2015-12-23|K|+3.1;
  4x3m|A|2015-11-11|K|+3.1;
  4yqd|A|2015-11-11|K|+3.1;
  4ws9|A|2015-02-10|K|+3.1;
  4rg1|A|2015-02-07|K|+3.1;
  3s97|A|2014-10-08|K|+3.1;
  3kld|B|2014-10-08|K|+3.1;
  4etq|C|2014-10-08|K|+3.1;
  3v5s|A|2014-09-25|K|+3.1;
  4cng|A|2014-09-25|K|+3.1;
  4cnf|A|2014-09-25|K|+3.1;
  4cne|A|2014-09-25|K|+3.1;
  4cnd|A|2014-09-25|K|+3.1;
  4j3c|A|2014-09-11|K|+3.1;
  3cwo|X|2014-08-23|K|+3.1;
  4jal|A|2014-08-19|K|+3.1;
  4mcc|A|2014-08-19|K|+3.1;
  4mcb|A|2014-08-19|K|+3.1;
  4l2z|A|2014-08-19|K|+3.1;
  4k0b|A|2014-08-19|K|+3.1;
  3axz|A|2014-08-19|K|+3.1;
  4ig6|A|2014-08-19|K|+3.1;
  4hpv|A|2014-08-19|K|+3.1;
  4h3y|A|2014-08-19|K|+3.1;
  3kzm|A|2014-08-19|K|+3.1;
  4jwg|A|2014-08-19|K|+3.1;
  3so4|A|2014-08-18|K|+3.1;
  4l4q|A|2014-08-13|K|+3.1;
  4pzk|B|2014-08-13|K|+3.1;
  4pzk|A|2014-08-13|K|+3.1;
  4ndn|A|2014-08-13|K|+3.1;
  4ndn|B|2014-08-13|K|+3.1;
  4ndn|C|2014-08-13|K|+3.1;
  4ndn|D|2014-08-13|K|+3.1;
  4ktv|D|2014-08-13|K|+3.1;
  4ktv|C|2014-08-13|K|+3.1;
  4ktv|B|2014-08-13|K|+3.1;
  4ktv|A|2014-08-13|K|+3.1;
  4ktt|D|2014-08-13|K|+3.1;
  4ktt|C|2014-08-13|K|+3.1;
  4ktt|B|2014-08-13|K|+3.1;
  4ktt|A|2014-08-13|K|+3.1;
  1uak|A|2014-07-31|K|+3.1;
  1by7|A|2014-07-31|K|+3.1;
  1f48|A|2014-07-31|K|+3.1;
  1fug|A|2014-07-31|K|+3.1;
  1gz0|A|2014-07-31|K|+3.1;
  1js1|X|2014-07-31|K|+3.1;
  1k3r|A|2014-07-31|K|+3.1;
  1mxa|A|2014-07-31|K|+3.1;
  1mxb|A|2014-07-31|K|+3.1;
  1mxc|A|2014-07-31|K|+3.1;
  1mxi|A|2014-07-31|K|+3.1;
  1ns5|A|2014-07-31|K|+3.1;
  1nxz|A|2014-07-31|K|+3.1;
  1o6d|A|2014-07-31|K|+3.1;
  1o90|A|2014-07-31|K|+3.1;
  1o92|A|2014-07-31|K|+3.1;
  1o93|A|2014-07-31|K|+3.1;
  1o9t|A|2014-07-31|K|+3.1;
  1p7l|A|2014-07-31|K|+3.1;
  1p9p|A|2014-07-31|K|+3.1;
  1qm4|A|2014-07-31|K|+3.1;
  1rg9|A|2014-07-31|K|+3.1;
  1to0|A|2014-07-31|K|+3.1;
  1uaj|A|2014-07-31|K|+3.1;
  1ual|A|2014-07-31|K|+3.1;
  1uam|A|2014-07-31|K|+3.1;
  1v2x|A|2014-07-31|K|+3.1;
  1v6z|A|2014-07-31|K|+3.1;
  1vh0|A|2014-07-31|K|+3.1;
  1vhk|A|2014-07-31|K|+3.1;
  1vhy|A|2014-07-31|K|+3.1;
  1x7o|A|2014-07-31|K|+3.1;
  1x7p|A|2014-07-31|K|+3.1;
  1xra|A|2014-07-31|K|+3.1;
  1xrb|A|2014-07-31|K|+3.1;
  1xrc|A|2014-07-31|K|+3.1;
  1y7w|A|2014-07-31|K|+3.1;
  1yh1|A|2014-07-31|K|+3.1;
  1zjr|A|2014-07-31|K|+3.1;
  1znc|A|2014-07-31|K|+3.1;
  2cx8|A|2014-07-31|K|+3.1;
  2egv|A|2014-07-31|K|+3.1;
  2egw|A|2014-07-31|K|+3.1;
  2fg6|C|2014-07-31|K|+3.1;
  2g7m|C|2014-07-31|K|+3.1;
  2ha8|A|2014-07-31|K|+3.1;
  2hfy|A|2014-07-31|K|+3.1;
  2i6d|A|2014-07-31|K|+3.1;
  2o3a|A|2014-07-31|K|+3.1;
  2obv|A|2014-07-31|K|+3.1;
  2p02|A|2014-07-31|K|+3.1;
  2qmm|A|2014-07-31|K|+3.1;
  2qwv|A|2014-07-31|K|+3.1;
  2v3j|A|2014-07-31|K|+3.1;
  2v3k|A|2014-07-31|K|+3.1;
  2yfk|A|2014-07-31|K|+3.1;
  2yy8|A|2014-07-31|K|+3.1;
  2z0y|A|2014-07-31|K|+3.1;
  2znc|A|2014-07-31|K|+3.1;
  3ai9|X|2014-07-31|K|+3.1;
  3aia|A|2014-07-31|K|+3.1;
  3b1b|A|2014-07-31|K|+3.1;
  3bbd|A|2014-07-31|K|+3.1;
  3bbe|A|2014-07-31|K|+3.1;
  3bbh|A|2014-07-31|K|+3.1;
  3dcm|X|2014-07-31|K|+3.1;
  3e5y|A|2014-07-31|K|+3.1;
  3ed7|A|2014-07-31|K|+3.1;
  3f7b|A|2014-07-31|K|+3.1;
  3fw3|A|2014-07-31|K|+3.1;
  3gyq|A|2014-07-31|K|+3.1;
  3ic6|A|2014-07-31|K|+3.1;
  3ief|A|2014-07-31|K|+3.1;
  3ilk|A|2014-07-31|K|+3.1;
  3iml|A|2014-07-31|K|+3.1;
  3jxf|A|2014-07-31|K|+3.1;
  3jxg|A|2014-07-31|K|+3.1;
  3jxh|C|2014-07-31|K|+3.1;
  3jyw|E|2014-07-31|K|+3.1;
  3knu|A|2014-07-31|K|+3.1;
  3kty|A|2014-07-31|K|+3.1;
  3kw2|A|2014-07-31|K|+3.1;
  3ky7|A|2014-07-31|K|+3.1;
  3kzc|A|2014-07-31|K|+3.1;
  3kzk|A|2014-07-31|K|+3.1;
  3kzn|A|2014-07-31|K|+3.1;
  3kzo|A|2014-07-31|K|+3.1;
  3l02|A|2014-07-31|K|+3.1;
  3l04|A|2014-07-31|K|+3.1;
  3l05|A|2014-07-31|K|+3.1;
  3l06|A|2014-07-31|K|+3.1;
  3l8u|A|2014-07-31|K|+3.1;
  3m4j|A|2014-07-31|K|+3.1;
  3m4n|A|2014-07-31|K|+3.1;
  3m5c|A|2014-07-31|K|+3.1;
  3m5d|A|2014-07-31|K|+3.1;
  3n4j|A|2014-07-31|K|+3.1;
  3n4k|A|2014-07-31|K|+3.1;
  3nk6|A|2014-07-31|K|+3.1;
  3nk7|A|2014-07-31|K|+3.1;
  3o7b|A|2014-07-31|K|+3.1;
  3oii|A|2014-07-31|K|+3.1;
  3oij|A|2014-07-31|K|+3.1;
  3oin|A|2014-07-31|K|+3.1;
  3onp|A|2014-07-31|K|+3.1;
  3q98|A|2014-07-31|K|+3.1;
  3quv|A|2014-07-31|K|+3.1;
  3rv2|A|2014-07-31|K|+3.1;
  3s82|A|2014-07-31|K|+3.1;
  3sig|A|2014-07-31|K|+3.1;
  3sij|A|2014-07-31|K|+3.1;
  3tde|A|2014-07-31|K|+3.1;
  3v5u|A|2014-07-31|K|+3.1;
  3znc|A|2014-07-31|K|+3.1;
  4e8b|A|2014-07-31|K|+3.1;
  4fak|A|2014-07-31|K|+3.1;
  4fmw|A|2014-07-31|K|+3.1;
  4gge|A|2014-07-31|K|+3.1;
  4h3z|A|2014-07-31|K|+3.1;
  4h6v|A|2014-07-31|K|+3.1;
  4jak|A|2014-07-31|K|+3.1;
  4jwf|A|2014-07-31|K|+3.1;
  4jwh|A|2014-07-31|K|+3.1;
  4jwj|A|2014-07-31|K|+3.1;
  4k1c|A|2014-07-31|K|+3.1;
  4kdz|A|2014-07-31|K|+3.1;
  4kgn|A|2014-07-31|K|+3.1;
  4kjr|A|2014-07-31|K|+3.1;
  4kpp|A|2014-07-31|K|+3.1;
  4l69|A|2014-07-31|K|+3.1;
  4l7i|A|2014-07-31|K|+3.1;
  4le5|A|2014-07-31|K|+3.1;
  4mcd|A|2014-07-31|K|+3.1;
  4o6d|A|2014-07-31|K|+3.1;
  4o6d|B|2014-07-31|K|+3.1;
  4odj|A|2014-07-31|K|+3.1;

      
Knot types Knot loop types pdb Title
K +31
1
5t8tA Crystal structure of a s-adenosylmethionine synthase from neisseria gonorrhoeae with bound amp and magnesium
K +31 5drsA Crystal structure of human carbonic anhydraseisozyme ii with 3-[(1s)-2,3-dihydro-1h-inden-1-ylamino]-2,5,6-trifluoro-4-[(2-hydroxyethyl)sulfonyl]benzenesulfonamide
K +31 5cjlA Crystal structure of human carbonic anhydrase ii in complex with a heteroaryl-pyrazole carboxylic acid derivative.
K +31 5dogA Crystal structure of human carbonic anhydrase isozyme ii with 2-(benzylamino)-3,5,6-trifluoro-4-[(2-phenylethyl)thio]benzene- sulfonamide
K +31 5dohA Crystal structure of human carbonic anhydrase isozyme ii with 2-[(1s)-2,3-dihydro-1h-inden-1-ylamino]-3,5,6-trifluoro-4-[(2-hydroxyethyl)thio]benzenesulfonamide
K +31
1
5e5rA Crystal structure of the complex between carbonic anhydrase-like domain of ptprg and immunoglobulin domains 2-3 of cntn3
K +31 5jpqe Cryo-em structure of the 90s pre-ribosome
K +31 5co4A Structural insights into the 2-oh methylation of c/u34 on trna
K +31 5g03A An unusual natural product primary sulfonamide: synthesis, carbonic anhydrase inhibition and protein x-ray structure of psammaplin c
K +31 5hwyA Structural mechanisms of extracellular ion exchange and induced binding-site occlusion in the sodium-calcium exchanger ncx_mj soaked with 10 mm na+ and zero ca2+
K +31 5apgA Structure of the sam-dependent rrna:acp-transferase tsr3 from vulcanisaeta distributa
K +31 5ap8A Structure of the sam-dependent rrna:acp-transferase tsr3 from s. solfataricus
K +31 4yqtA Crystal structure of trmd, a m1g37 trna methyltransferase with sam-competitive compounds
K +31 4yqsA Crystal structure of trmd, a m1g37 trna methyltransferase with sam-competitive compounds
K +31 4yqrA Crystal structure of trmd, a m1g37 trna methyltransferase with sam-competitive compounds
K +31 4ypxA Crystal structure of trmd, a m1g37 trna methyltransferase with sam-competitive compounds
K +31 5a1iA The structure of humab mat2a in complex with same, adenosine, methionine and ppnp.
K +31 4x3lA Crystal structure of ttha0275 from thermus thermophilus (hb8) in complex with 5'-methylthioadenosine in space group p21212
K +31 5faiA Emg1 n1-specific pseudouridine methyltransferase
K +31 5c77A A novel protein arginine methyltransferase
K +31 5c74A Structure of a novel protein arginine methyltransferase
K +31
1
5a7yA Crystal structure of sulfolobus acidocaldarius trm10 in complex with s-adenosylhomocysteine
K +31 5a7zA Crystal structure of sulfolobus acidocaldarius trm10 at 2.1 angstrom resolution.
K +31 5a7tA Crystal structure of sulfolobus acidocaldarius trm10 at 2.4 angstrom resolution.
K +31 4yvkA Crystal structure of h. influenzae trmd in complex with sinefungin and trna variant (g36c)
K +31 4yvjA Crystal structure of h. influenzae trmd in complex with sinefungin and trna variant (g36u)
K +31 4yviA Crystal structure of h. influenzae trmd in complex with sinefungin and trna
K +31 4yvhA Crystal structure of h. influenzae trmd in complex with sinefungin
K +31 4yvgA Crystal structure of h. influenzae trmd in complex with adomet
K +31 4xboA Crystal structure of full length e.coli trmj in complex with sah
K +31 4x3mA Crystal structure of ttha0275 from thermus thermophilus (hb8) in complex with adenosine in space group p212121
K +31 4yqdA Crystal structure of trmd, a m1g37 trna methyltransferase with sam-competitive compounds
K +31
1
4ws9A Crystal structure of smat n159g from sulfolobus solfataricus
K +31 4rg1A Methyltransferase domain of c9orf114
K +31 3s97A Ptprz cntn1 complex
K +31
1
3kldB Ptprg cntn4 complex
K +31
1
4etqC Vaccinia virus d8l imv envelope protein in complex with fab of murine igg2a la5
K +31
1
3v5sA Structure of sodium/calcium exchanger from methanococcus jannaschii
K +31 4cngA Crystal structure of sulfolobus acidocaldarius trmj in complex with s-adenosyl-l-homocysteine
K +31
1
4cnfA Crystal structure of sulfolobus acidocaldarius trmj
K +31 4cneA Crystal structure of e.coli trmj in complex with s-adenosyl-l- homocysteine
K +31 4cndA Crystal structure of e.coli trmj
K +31
1
4j3cA Crystal structure of 16s ribosomal rna methyltransferase rsme
K +31 3cwoX A beta/alpha-barrel built by the combination of fragments from different folds
K +31 4jalA Crystal structure of trna (um34/cm34) methyltransferase trml from escherichia coli with sah
K +31 4mccA Hintrmd in complex with n-[4-(aminomethyl)benzyl]-4-oxo-3,4-dihydrothieno[2,3-d]pyrimidine-5-carboxamide
K +31 4mcbA H.influenzae trmd in complex with n-(4-{[(1h-imidazol-2-ylmethyl)amino]methyl}benzyl)-4-oxo-3,4-dihydrothieno[2,3-d]pyrimidine-5-carboxamide
K +31 4l2zA Crystal structure of s-adenosylmethionine synthetase from sulfolobus solfataricus complexed with sae and ppi
K +31 4k0bA Crystal structure of s-adenosylmethionine synthetase from sulfolobus solfataricus complexed with sam and ppi
K +31 3axzA Crystal structure of haemophilus influenzae trmd in complex with adenosine
K +31 4ig6A Crystal structure of a trna (guanine-n1)-methyltransferase from anaplasma phagocytophilum bound to s-adenosylhomocysteine
K +31
1
4hpvA Crystal structure of s-adenosylmethionine synthetase from sulfolobus solfataricus
K +31 4h3yA Crystal structure of an asymmetric dimer of a trna (guanine-(n(1)-)-methyltransferase from burkholderia phymatum bound to s-adenosyl homocystein in one half-site
K +31 3kzmA Crystal structure of n-acetyl-l-ornithine transcarbamylase complexed with carbamyl phosphate
K +31 4jwgA Crystal structure of sptrm10(74)
K +31
1
3so4A Methionine-adenosyltransferase from entamoeba histolytica
K +31 4l4qA Methionine adenosyltransferase
K +31 4pzkB Crystal strucrure of putative rna methyltransferase from bacillus anthracis.
K +31 4pzkA Crystal strucrure of putative rna methyltransferase from bacillus anthracis.
K +31
1
4ndnA Structural insights of mat enzymes: mata2b complexed with sam and ppnp
K +31 4ndnB Structural insights of mat enzymes: mata2b complexed with sam and ppnp
K +31
1
4ndnC Structural insights of mat enzymes: mata2b complexed with sam and ppnp
K +31 4ndnD Structural insights of mat enzymes: mata2b complexed with sam and ppnp
K +31 4ktvD Structural insights of mat enzymes: mata2b complexed with adenosine and pyrophosphate
K +31
1
4ktvC Structural insights of mat enzymes: mata2b complexed with adenosine and pyrophosphate
K +31 4ktvB Structural insights of mat enzymes: mata2b complexed with adenosine and pyrophosphate
K +31
1
4ktvA Structural insights of mat enzymes: mata2b complexed with adenosine and pyrophosphate
K +31 4kttD Structural insights of mat enzymes: mata2b complexed with sam
K +31
1
4kttC Structural insights of mat enzymes: mata2b complexed with sam
K +31 4kttB Structural insights of mat enzymes: mata2b complexed with sam
K +31
1
4kttA Structural insights of mat enzymes: mata2b complexed with sam
K +31 1uakA Crystal structure of trna(m1g37)methyltransferase: insight into trna recognition
K +31
1
1by7A Human plasminogen activator inhibitor-2. loop (66-98) deletion mutant
K +31
1
1f48A Crystal structure of the escherichia coli arsenite-translocating atpase
K +31 1fugA S-adenosylmethionine synthetase
K +31 1gz0A 23s ribosomal rna g2251 2'o-methyltransferase rlmb
K +31 1js1X Crystal structure of a new transcarbamylase from the anaerobic bacterium bacteroides fragilis at 2.0 a resolution
K +31 1k3rA Crystal structure of the methyltransferase with a knot from methanobacterium thermoautotrophicum
K +31
1
1mxaA S-adenosylmethionine synthetase with ppi
K +31
1
1mxbA S-adenosylmethionine synthetase with adp
K +31
1
1mxcA S-adenosylmethionine synthetase with 8-br-adp
K +31 1mxiA Structure of yibk from haemophilus influenzae (hi0766): a methyltransferase with a cofactor bound at a site formed by a knot
K +31 1ns5A X-ray structure of ybea from e.coli. northeast structural genomics research consortium (nesg) target er45
K +31 1nxzA X-ray crystal structure of protein yggj_haein of haemophilus influenzae. northeast structural genomics consortium target ir73.
K +31 1o6dA Crystal structure of a hypothetical protein
K +31
1
1o90A Methionine adenosyltransferase complexed with a l-methionine analogous
K +31
1
1o92A Methionine adenosyltransferase complexed with adp and a l-methionine analogous
K +31
1
1o93A Methionine adenosyltransferase complexed with atp and a l-methionine analogous
K +31
1
1o9tA Methionine adenosyltransferase complexed with both substrates atp and methionine
K +31 1p7lA S-adenosylmethionine synthetase complexed with amppnp and met.
K +31 1p9pA The crystal structure of a m1g37 trna methyltransferase, trmd
K +31
1
1qm4A Methionine adenosyltransferase complexed with a l-methionine analogous
K +31 1rg9A S-adenosylmethionine synthetase complexed with sam and ppnp
K +31 1to0A X-ray structure of northeast structural genomics target protein sr145 from bacillus subtilis
K +31 1uajA Crystal structure of trna(m1g37)methyltransferase: insight into trna recognition
K +31 1ualA Crystal structure of trna(m1g37)methyltransferase: insight into trna recognition
K +31 1uamA Crystal structure of trna(m1g37)methyltransferase: insight into trna recognition
K +31 1v2xA Trmh
K +31 1v6zA Crystal structure of tt1573 from thermus thermophilus
K +31 1vh0A Crystal structure of a hypothetical protein
K +31
1
1vhkA Crystal structure of an hypothetical protein
K +31 1vhyA Crystal structure of haemophilus influenzae protein hi0303, pfam duf558
K +31 1x7oA Crystal structure of the spou methyltransferase avirb from streptomyces viridochromogenes
K +31 1x7pA Crystal structure of the spou methyltransferase avirb from streptomyces viridochromogenes in complex with the cofactor adomet
K +31
1
1xraA Crystal structure of s-adenosylmethionine synthetase
K +31
1
1xrbA S-adenosylmethionine synthetase (mat, atp: l-methionine s-adenosyltransferase, e.c.2.5.1.6) in which met residues are replaced with selenomethionine residues (mse)
K +31
1
1xrcA Crystal structure of s-adenosylmethionine synthetase
K +31 1y7wA Crystal structure of a halotolerant carbonic anhydrase from dunaliella salina
K +31 1yh1A Crystal structure of acetylornithine transcarbamylase
K +31 1zjrA Crystal structure of a. aeolicus trmh/spou trna modifying enzyme
K +31 1zncA Human carbonic anhydrase iv
K +31 2cx8A Crystal structure of methyltransferase with ligand(sah)
K +31 2egvA Crystal structure of rrna methyltransferase with sam ligand
K +31 2egwA Crystal structure of rrna methyltransferase with sah ligand
K +31 2fg6C N-succinyl-l-ornithine transcarbamylase from b. fragilis complexed with sulfate and n-succinyl-l-norvaline
K +31 2g7mC Crystal structure of b. fragilis n-succinylornithine transcarbamylase p90e mutant complexed with carbamoyl phosphate and n-acetylnorvaline
K +31 2ha8A Methyltransferase domain of human tar (hiv-1) rna binding protein 1
K +31 2hfyA Structural and kinetic analysis of proton shuttle residues in the active site of human carbonic anhydrase iii
K +31 2i6dA The structure of a putative rna methyltransferase of the trmh family from porphyromonas gingivalis.
K +31
1
2o3aA Crystal structure of a protein af_0751 from archaeoglobus fulgidus
K +31 2obvA Crystal structure of the human s-adenosylmethionine synthetase 1 in complex with the product
K +31 2p02A Crystal structure of the alpha subunit of human s-adenosylmethionine synthetase 2
K +31 2qmmA Crystal structure of apc86534.1 (c-terminal domain of ncbi aab90184.1; pfam big 123.1)
K +31
1
2qwvA Crystal structure of unknown function protein vca1059
K +31 2v3jA The yeast ribosome synthesis factor emg1 alpha beta knot fold methyltransferase
K +31 2v3kA The yeast ribosome synthesis factor emg1 alpha beta knot fold methyltransferase
K +31 2yfkA Crystal structure of a putative transcarbamoylase from enterococcus faecalis
K +31 2yy8A Crystal structure of archaeal trna-methylase for position 56 (atrm56) from pyrococcus horikoshii, complexed with s-adenosyl-l-methionine
K +31 2z0yA Crystal structure of ttha0657-sam complex
K +31
1
2zncA Murine carbonic anhydrase iv
K +31 3ai9X Crystal structure of duf358 protein reveals a putative spout-class rrna methyltransferase
K +31 3aiaA Crystal structure of duf358 reveals a putative spout-class methltransferase
K +31
1
3b1bA The unique structure of wild type carbonic anhydrase alpha-ca1 from chlamydomonas reinhardtii
K +31 3bbdA M. jannaschii nep1 complexed with s-adenosyl-homocysteine
K +31 3bbeA M. jannaschii nep1
K +31 3bbhA M. jannaschii nep1 complexed with sinefungin
K +31 3dcmX Crystal structure of the thermotoga maritima spout family rna-methyltransferase protein tm1570 in complex with s-adenosyl-l-methionine
K +31 3e5yA Crystal structure of trmh family rna methyltransferase from burkholderia pseudomallei
K +31
1
3ed7A Replacement of val3 in human thymidylate synthase affects its kinetic properties and intracellular stability
K +31
1
3f7bA Crystal structure of soluble domain of ca4 in complex with small molecule.
K +31
1
3fw3A Crystal structure of soluble domain of ca4 in complex with dorzolamide
K +31 3gyqA Structure of the thiostrepton-resistance methyltransferase s-adenosyl-l-methionine complex
K +31
1
3ic6A Crystal structure of putative methylase family protein from neisseria gonorrhoeae
K +31 3iefA Crystal structure of trna guanine-n1-methyltransferase from bartonella henselae using mpcs.
K +31 3ilkA The structure of a probable methylase family protein from haemophilus influenzae rd kw20
K +31
1
3imlA Crystal structure of s-adenosylmethionine synthetase from burkholderia pseudomallei
K +31 3jxfA Ca-like domain of human ptprz
K +31
1
3jxgA Ca-like domain of mouse ptprg
K +31
1
3jxhC Ca-like domain of human ptprg
K +31 3jywE Structure of the 60s proteins for eukaryotic ribosome based on cryo-em map of thermomyces lanuginosus ribosome at 8.9a resolution

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