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Oriented and selective enzyme immobilization on functionalized silica carrier using the cationic binding module Zbasic2: Design of a heterogeneous D-amino acid oxidase catalyst on porous glass

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논문

Oriented and selective enzyme immobilization on functionalized silica carrier using the cationic binding module Zbasic2: Design of a heterogeneous D-amino acid oxidase catalyst on porous glass

학술지

Biotechnology and bioengineering

저자명

Bolivar, Juan M.; Nidetzky, Bernd

초록

<P><B>Abstract</B></P><P><SMALL>D</SMALL>&#8208;Amino acid oxidase from <I>Trigonopsis variabilis</I> (<I>Tv</I>DAO) is applied in industry for the synthesis of pharmaceutical intermediates. Because free <I>Tv</I>DAO is extremely sensitive to exposure to gas&ndash;liquid interfaces, biocatalytic processing is usually performed with enzyme immobilizates that offer enhanced stability under bubble aeration. We herein present an &ldquo;Immobilization by Design&rdquo; approach that exploits engineered charge complementarity between enzyme and carrier to optimize key features of the immobilization of <I>Tv</I>DAO. A fusion protein between <I>Tv</I>DAO and the positively charged module <I>Z</I><SUB>basic2</SUB> was generated, and a corresponding oppositely charged carrier was obtained by derivatization of mesoporous glass with 3&#8208;(trihydroxysilyl)&#8208;1&#8208;propane&#8208;sulfonic acid. Using 250&thinsp;mM NaCl for charge screening at pH 7.0, the <I>Z</I><SUB>basic2</SUB> fusion of <I>Tv</I>DAO was immobilized directly from <I>E. coli</I> cell extract with almost absolute selectivity and full retention of catalytic effectiveness of the isolated enzyme in solution. Attachment of the homodimeric enzyme to the carrier was quasi&#8208;permanent in low&#8208;salt buffer but fully reversible upon elution with 5&thinsp;M NaCl. Immobilized <I>Tv</I>DAO was not sensitive to bubble aeration and received substantial (&ge;tenfold) stabilization of the activity at 45&deg;C as compared to free enzyme, suggesting immobilization via multisubunit oriented interaction of enzyme with the insoluble carrier. The <I>Z</I><SUB>basic2</SUB> enzyme immobilizate was demonstrated to serve as re&#8208;usable heterogeneous catalyst for <SMALL>D</SMALL>&#8208;amino acid oxidation. <I>Z</I><SUB>basic2</SUB>&#8208;mediated binding on a sulfonic acid group&#8208;containing glass carrier constitutes a generally useful strategy of enzyme immobilization that supports transition from case&#8208;specific empirical development to rational design. Biotechnol. Bioeng. 2012; 109:1490&ndash;1498. &copy; 2012 Wiley Periodicals, Inc.</P>

발행연도

2012

발행기관

Wiley Subscription Services, Inc., A Wiley Company

ISSN

0006-3592

ISSN

1097-0290

109

6

페이지

pp.1490-1498

주제어

enzyme immobilization; cationic binding module; Zbasic2; cation exchange; charge complementarity; one&#x2010; step purification and immobilization; random and oriented binding;

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1 2023-12-11

논문; 2012-01-17

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