Transglycosylation by a chitinase from Enterobacter cloacae subsp. cloacae generates longer chitin oligosaccharides /631/45/603 /631/45/607 /82/29 /82/58 /82/83 /38/77 /82/16 article

dc.contributor.author Mallakuntla, Mohan Krishna
dc.contributor.author Vaikuntapu, Papa Rao
dc.contributor.author Bhuvanachandra, Bhoopal
dc.contributor.author Das, Subha Narayan
dc.contributor.author Podile, Appa Rao
dc.date.accessioned 2022-03-27T03:45:46Z
dc.date.available 2022-03-27T03:45:46Z
dc.date.issued 2017-12-01
dc.description.abstract Humans have exploited natural resources for a variety of applications. Chitin and its derivative chitin oligosaccharides (CHOS) have potential biomedical and agricultural applications. Availability of CHOS with the desired length has been a major limitation in the optimum use of such natural resources. Here, we report a single domain hyper-transglycosylating chitinase, which generates longer CHOS, from Enterobacter cloacae subsp. cloacae 13047 (EcChi1). EcChi1 was optimally active at pH 5.0 and 40 °C with a Km of 15.2 mg ml-1, and k cat/Km of 0.011× 102 mg-1 ml min-1 on colloidal chitin. The profile of the hydrolytic products, major product being chitobiose, released from CHOS indicated that EcChi1 was an endo-acting enzyme. Transglycosylation (TG) by EcChi1 on trimeric to hexameric CHOS resulted in the formation of longer CHOS for a prolonged duration. EcChi1 showed both chitobiase and TG activities, in addition to hydrolytic activity. The TG by EcChi1 was dependent, to some extent, on the length of the CHOS substrate and concentration of the enzyme. Homology modeling and docking with CHOS suggested that EcChi1 has a deep substrate-binding groove lined with aromatic amino acids, which is a characteristic feature of a processive enzyme.
dc.identifier.citation Scientific Reports. v.7(1)
dc.identifier.uri 10.1038/s41598-017-05140-3
dc.identifier.uri http://www.nature.com/articles/s41598-017-05140-3
dc.identifier.uri https://dspace.uohyd.ac.in/handle/1/5277
dc.title Transglycosylation by a chitinase from Enterobacter cloacae subsp. cloacae generates longer chitin oligosaccharides /631/45/603 /631/45/607 /82/29 /82/58 /82/83 /38/77 /82/16 article
dc.type Journal. Article
dspace.entity.type
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