PDB entry 4m81
View 4m81 on RCSB PDB site
Description: The structure of E292S glycosynthase variant of exo-1,3-beta-glucanase from Candida albicans complexed with 1-fluoro-alpha-D-glucopyranoside (donor) and p-nitrophenyl beta-D-glucopyranoside (acceptor) at 1.86A resolution
Class: hydrolase
Keywords: tim barrel, glycoside hydrolase family 5, glycoside hydrolase, cell wall hydrolase, glycosynthase, hydrolase, protein-carbohydrate interaction
Deposited on
2013-08-12, released
2014-06-25
The last revision prior to the SCOPe 2.08 freeze date was dated
2020-07-29, with a file datestamp of
2020-07-04.
Experiment type: XRAY
Resolution: 1.86 Å
R-factor: N/A
AEROSPACI score: 0.43
(click here for full SPACI score report)
Chains and heterogens:
- Chain 'A':
Compound: exo-1,3-beta-glucanase
Species: Candida albicans [TaxId:237561]
Gene: CaO19.10507, XOG, XOG1
Database cross-references and differences (RAF-indexed):
- Uniprot Q5AI63 (Start-398)
- see remark 999 (62)
- engineered mutation (290)
- see remark 999 (327)
Domains in SCOPe 2.08: d4m81a_ - Heterogens: GLF, PNW, GOL, HOH
PDB Chain Sequences:
- Chain 'A':
Sequence, based on SEQRES records: (download)
>4m81A (A:)
gghnvawdydnnvirgvnlggwfvlepymtpslfepfqngndqsgvpvdeyhwtqtlgke
aalrilqkhwstwiteqdfkqisnlglnfvripigywafqlldndpyvqgqvqylekalg
warknnirvwidlhgapgsqngfdnsglrdsynfqngdntqvtlnvlntifkkyggneys
dvvigiellneplgpvlnmdklkqffldgynslrqtgsvtpviihdafqvfgywnnfltv
aegqwnvvvdhhhyqvfsggelsrnindhisvacnwgwdakkeshwnvagswsaaltdca
kwlngvnrgaryegaydnapyigscqplldisqwsdehktdtrryieaqldafeytggwv
fwswktenapewsfqtltynglfpqpvtdrqfpnqcgfh
Sequence, based on observed residues (ATOM records): (download)
>4m81A (A:)
awdydnnvirgvnlggwfvlepymtpslfepfqngndqsgvpvdeyhwtqtlgkeaalri
lqkhwstwiteqdfkqisnlglnfvripigywafqlldndpyvqgqvqylekalgwarkn
nirvwidlhgapgsqngfdnsglrdsynfqngdntqvtlnvlntifkkyggneysdvvig
iellneplgpvlnmdklkqffldgynslrqtgsvtpviihdafqvfgywnnfltvaegqw
nvvvdhhhyqvfsggelsrnindhisvacnwgwdakkeshwnvagswsaaltdcakwlng
vnrgaryegaydnapyigscqplldisqwsdehktdtrryieaqldafeytggwvfwswk
tenapewsfqtltynglfpqpvtdrqfpnqcgfh