4KTVC

Structural insights of mat enzymes: mata2b complexed with adenosine and pyrophosphate
Warning
  • Chain breaks within knot 31 (displayed as a gray area on the plot and as '-' on the sequence). The broken part of the chain has been replaced by a straight segment, which may affect what knot types are detected - be careful with interpreting results.
Knot K +31
Knot core range Knot core length Knot tails range Slipknot tails range Slipknot loops range N-end length C-end length Type
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+31 11-255 245 1-10, 256-381 10 126 knot
Chain Sequence
EGTFLFTSESVGEGHPDKICDQISDAVLDAHLQQDPDAKVACETVAKTGMILLAGEITSRAAVDYQKVVREAVKHIGYDDSSKGFDYKTCNVLVALEQQS--------------------QGLMFGYATDETEECMPLTIVLAHKLNAKLAELRRNGTLPWLRPDSKTQVTVQYMQDRGAVLPIRVHTIVISVQHDEEVCLDEMRDALKEKVIKAVVPAKYLDEDTIYHLQPSGRFVIGGPQGDAGLTGRKIIVDTYGGWGAHGGGAFSGKDYTKVDRSAAYAARWVAKSLVKGGLCRRVLVQVSYAIGVSHPLSISIFHYGTSQKSERELLEIVKKNFDLRPGVIVRDLDLKKPIYQRTAAYGHFGRDSFPWEVPKKLKY
Whole chain analysis
Subchain analysis 

Knotoid cutoff: 0.5


Knotoid matrix content: 1

Knot core range Knot core length Knot tails range Slipknot tails range Slipknot loops range N-end length C-end length Type
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2.1 19-262 244 1-2, 327-361 3-18, 263-326 2 35 slipknot
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2.1 18-348 331 349-361 1-3 4-17 3 12 slipknot
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2.1 20-267 248 1-4, 333-361 5-19, 268-332 4 29 slipknot
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2.1 21-262 242 1-18, 324-361 19-20, 263-323 18 38 slipknot
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2.1 18-334 317 1-6, 348-361 7-17, 335-347 6 14 slipknot
sequence length 381
structure length 361
publication title Structure and function study of the complex that synthesizes S-adenosylmethionine
doi rcsb
molecule tags Transferase
molecule keywords S-adenosylmethionine synthase isoform type-2
source organism Homo sapiens
missing residues 101-120
ec nomenclature ec 2.5.1.6: Methionine adenosyltransferase.
pdb deposition date 2013-05-21
KnotProt deposition date 2014-08-13
Image from the rcsb pdb (www.rcsb.org)
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similar chains in the KnotProt database (?% sequence similarity)
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similar chains in the pdb database (?% sequence similarity)

 
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KnotProt | Interdisciplinary Laboratory of Biological Systems Modelling