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Truncation of N- and C-terminal regions of Streptococcus mutans dextranase enhances catalytic activity

Authors :
Kim, Young-Min
Shimizu, Ryoko
Nakai, Hiroyuki
Mori, Haruhide
Okuyama, Masayuki
Kang, Min-Sun
Fujimoto, Zui
Funane, Kazumi
Kim, Doman
Kimura, Atsuo
Source :
Applied microbiology and biotechnology. 91(2):329-339
Publication Year :
2011
Publisher :
springer, 2011.

Abstract

Multiple forms of native and recombinant endo-dextranases (Dexs) of the glycoside hydrolase family (GH) 66 exist. The GH 66 Dex gene from Streptococcus mutans ATCC 25175 (SmDex) was expressed in Escherichia coli. The recombinant full-size (95.4kDa) SmDex protein was digested to form an 89.8kDa isoform (SmDex90). The purified SmDex90 was proteolytically degraded to more than seven polypeptides (23-70kDa) during long storage. The protease-insensitive protein was desirable for the biochemical analysis and utilization of SmDex. GH 66 Dex was predicted to comprise four regions from the N- to C-termini: N-terminal variable region (N-VR), conserved region (CR), glucan-binding site (GBS), and C-terminal variable region (C-VR). Five truncated SmDexs were generated by deleting N-VR, GBS, and/or C-VR. Two truncation-mutant enzymes devoid of C-VR (TM-NCGΔ) or N-VR/C-VR (TM-ΔCGΔ) were catalytically active, thereby indicating that N-VR and C-VR were not essential for the catalytic activity. TM-ΔCGΔ did not accept any further protease-degradation during long storage. TM-NCGΔ and TM-ΔCGΔ enhanced substrate hydrolysis, suggesting that N-VR and C-VR induce hindered substrate binding to the active site.

Details

Language :
English
ISSN :
14320614
Volume :
91
Issue :
2
Database :
OpenAIRE
Journal :
Applied microbiology and biotechnology
Accession number :
edsair.jairo.........1b10f3c5c9fe6eea3374737404c10747