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Multiple genes in a single host: cost-effective production of bacterial laccase (cotA), pectate lyase (pel), and endoxylanase (xyl) by simultaneous expression and cloning in single vector in E. coli

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논문

Multiple genes in a single host: cost-effective production of bacterial laccase (cotA), pectate lyase (pel), and endoxylanase (xyl) by simultaneous expression and cloning in single vector in E. coli

학술지

PloS one

저자명

Kumar, Sandeep; Jain, Kavish Kumar; Bhardwaj, Kailash N.; Chakraborty, Subhojit; Kuhad, Ramesh Chander

초록

<P>This study attempted to reduce the enzyme production cost for exploiting lignocellulosic materials by expression of multiple genes in a single host. Genes for bacterial laccase (CotA), pectate lyase (Pel) and endoxylanase (Xyl), which hold significance in lignocellulose degradation, were cloned in pETDuet-1 vector containing two independent cloning sites (MCS). <I>CotA</I> and <I>xyl</I> genes were cloned in MCS1 and MCS 2, respectively. <I>Pel</I> gene was cloned by inserting complete cassette (T<SUB>7</SUB> promoter, ribosome binding site, <I>pel</I> gene, His tag and complete gene ORF) preceded by <I>cotA</I> open reading frame in the MCS1. IPTG induction of CPXpDuet-1 construct in <I>E</I>. <I>coli</I> BL21(DE3) resulted in expression of all three heterologous proteins of ~65 kDa (CotA), ~45 kDa (Pel) and ~25 kDa (Xyl), confirmed by SDS-PAGE and western blotting. Significant portions of the enzymes were also found in culture supernatant (~16, ~720 and ~370 IU/ml activities of CotA, Pel and Xyl, respectively). Culture media optimization resulted in 2, 3 and 7 fold increased secretion of recombinant CotA, Pel and Xyl, respectively. Bioreactor level optimization of the recombinant cocktail expression resulted in production of 19 g/L dry cell biomass at OD<SUB>600nm</SUB> 74 from 1 L induced culture after 15 h of cultivation, from which 9, 627 and 1090 IU/ml secretory enzyme activities of CotA, Xyl and Pel were obtained, respectively. The cocktail was also found to increase the saccharification of orange peel in comparison to the xylanase alone. Thus, simultaneous expression as well as extra cellular secretion of these enzymes as cocktail can reduce the enzyme production cost which increases their applicability specially for exploiting lignocellulosic materials for their conversion to value added products like alcohol and animal feed.</P>

발행연도

2015

발행기관

Public Library of Science

라이선스

cc-by

ISSN

1932-6203

10

12

페이지

pp.e0144379

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1 2023-12-11

논문; 2015-12-07

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