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使用选定添加剂激活和稳定橄榄重组13-氢过氧化物裂解酶

Activation and Stabilization of Olive Recombinant 13-Hydroperoxide Lyase Using Selected Additives.

作者信息

Jacopini Sabrina, Vincenti Sophie, Mariani Magali, Brunini-Bronzini de Caraffa Virginie, Gambotti Claude, Desjobert Jean-Marie, Muselli Alain, Costa Jean, Tomi Félix, Berti Liliane, Maury Jacques

机构信息

Laboratoire de Biochimie et Biologie Moléculaire Végétales, Université de Corse, CNRS UMR6134 SPE, Campus Grimaldi, BP52, 20250, Corte, France.

Laboratoire de Chimie des Produits Naturels, Université de Corse, CNRS UMR6134 SPE, Campus Grimaldi, BP52, 20250, Corte, France.

出版信息

Appl Biochem Biotechnol. 2017 Jul;182(3):1000-1013. doi: 10.1007/s12010-016-2377-0. Epub 2016 Dec 24.

Abstract

The stabilization of olive recombinant hydroperoxide lyases (rHPLs) was investigated using selected chemical additives. Two rHPLs were studied: HPL full-length and HPL with its chloroplast transit peptide deleted (matured HPL). Both olive rHPLs are relatively stable at 4 °C, and enzyme activity can be preserved (about 100% of the rHPL activities are maintained) during 5 weeks of storage at -20 or at -80 °C in the presence of glycerol (10%, v/v). Among the additives used in this study, glycine (2.5% w/v), NaCl (0.5 M), and NaSO (0.25 M) provided the highest activation of HPL full-length activity, while the best matured HPL activity was obtained with NaSO (0.25 M) and NaCl (1 M). Although the inactivation rate constants (k) showed that these additives inactivate both rHPLs, their use is still relevant as they strongly increase HPL activity. Results of C6-aldehyde production assays also showed that glycine, NaCl, and NaSO are appropriate additives and that NaCl appears to be the best additive, at least for hexanal production.

摘要

使用选定的化学添加剂对橄榄重组氢过氧化物裂解酶(rHPLs)的稳定性进行了研究。研究了两种rHPL:全长HPL和缺失叶绿体转运肽的HPL(成熟HPL)。两种橄榄rHPL在4°C时相对稳定,在甘油(10%,v/v)存在的情况下,于-20或-80°C储存5周期间,酶活性可以得到保留(约维持rHPL活性的100%)。在本研究使用的添加剂中,甘氨酸(2.5% w/v)、NaCl(0.5 M)和Na₂SO₄(0.25 M)对全长HPL活性的激活作用最强,而对于成熟HPL,Na₂SO₄(0.25 M)和NaCl(1 M)能使其活性达到最佳。尽管失活速率常数(k)表明这些添加剂会使两种rHPL失活,但它们的使用仍然具有意义,因为它们能显著提高HPL活性。C6醛生成试验的结果还表明,甘氨酸、NaCl和Na₂SO₄是合适的添加剂,并且NaCl似乎是最佳添加剂,至少对于己醛生成而言是这样。

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