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一株盐生短小芽孢杆菌来源的新型 NaCl 激活和氧化稳定性脂肪酶。

A novel subtilase with NaCl-activated and oxidant-stable activity from Virgibacillus sp. SK37.

机构信息

School of Biotechnology, Institute of Agricultural Technology, Suranaree University of Technology, 111 University Avenue, Nakhon Ratchasima, 30000, Thailand.

出版信息

BMC Biotechnol. 2011 Jun 9;11:65. doi: 10.1186/1472-6750-11-65.

Abstract

BACKGROUND

Microbial proteases are one of the most commercially valuable enzymes, of which the largest market share has been taken by subtilases or alkaline proteases of the Bacillus species. Despite a large amount of information on microbial proteases, a search for novel proteases with unique properties is still of interest for both basic and applied aspects of this highly complex class of enzymes. Oxidant stable proteases (OSPs) have been shown to have a wide application in the detergent and bleaching industries and recently have become one of the most attractive enzymes in various biotechnological applications.

RESULTS

A gene encoding a novel member of the subtilase superfamily was isolated from Virgibacillus sp. SK37, a protease-producing bacterium isolated from Thai fish sauce fermentation. The gene was cloned by an activity-based screening of a genomic DNA expression library on Luria-Bertani (LB) agar plates containing 1 mM IPTG and 3% skim milk. Of the 100,000 clones screened, all six isolated positive clones comprised one overlapping open reading frame of 45% identity to the aprX gene from Bacillus species. This gene, designated aprX-sk37 was cloned into pET21d(+) and over-expressed in E. coli BL21(DE3). The enzyme product, designated AprX-SK37, was purified by an immobilized metal ion affinity chromatography to apparent homogeneity and characterized. The AprX-SK37 enzyme showed optimal catalytic conditions at pH 9.5 and 55°C, based on the azocasein assay containing 5 mM CaCl2. Maximum catalytic activity was found at 1 M NaCl with residual activity of 30% at 3 M NaCl. Thermal stability of the enzyme was also enhanced by 1 M NaCl. The enzyme was absolutely calcium-dependent, with optimal concentration of CaCl2 at 15 mM. Inhibitory effects by phenylmethanesulfonyl fluoride and ethylenediaminetetraacetic acid indicated that this enzyme is a metal-dependent serine protease. The enzyme activity was sensitive towards reducing agents, urea, and SDS, but relatively stable up to 5% of H2O2. Phylogenetic analysis suggested that AprX-SK37 belongs to a novel family of the subtilase superfamily. We propose the name of this new family as alkaline serine protease-X (AprX).

CONCLUSIONS

The stability towards H2O2 and moderately halo- and thermo-tolerant properties of the AprX-SK37 enzyme are attractive for various biotechnological applications.

摘要

背景

微生物蛋白酶是最具商业价值的酶之一,其中芽孢杆菌属的枯草菌素或碱性蛋白酶占据了最大的市场份额。尽管已经有大量关于微生物蛋白酶的信息,但寻找具有独特性质的新型蛋白酶仍然是这一高度复杂酶类的基础和应用方面都感兴趣的问题。氧化剂稳定蛋白酶(OSPs)已被证明在洗涤剂和漂白工业中有广泛的应用,并且最近已成为各种生物技术应用中最具吸引力的酶之一。

结果

从泰国鱼露发酵中分离出的产蛋白酶细菌 Virgibacillus sp. SK37 中分离出一种新型枯草菌素超家族成员的基因。该基因通过在含有 1 mM IPTG 和 3%脱脂乳的 LB 琼脂平板上对基因组 DNA 表达文库进行基于活性的筛选进行克隆。在筛选的 100,000 个克隆中,所有六个分离出的阳性克隆均包含一个与芽孢杆菌属 aprX 基因 45%同源的重叠开放阅读框。该基因被命名为 aprX-sk37,并被克隆到 pET21d(+)中,并在 E. coli BL21(DE3)中过表达。酶产物,命名为 AprX-SK37,通过固定化金属离子亲和层析纯化至明显的均一性并进行了表征。基于含有 5 mM CaCl2 的偶氮酪蛋白测定法,AprX-SK37 酶在 pH 9.5 和 55°C 下显示出最佳催化条件。在 1 M NaCl 下发现最大催化活性,在 3 M NaCl 下残留活性为 30%。酶的热稳定性也通过 1 M NaCl 得到增强。该酶绝对依赖钙,最佳 CaCl2 浓度为 15 mM。苯甲磺酰氟和乙二胺四乙酸的抑制作用表明该酶是一种金属依赖性丝氨酸蛋白酶。该酶的活性对还原剂、尿素和 SDS 敏感,但在高达 5%的 H2O2 下相对稳定。系统发育分析表明,AprX-SK37 属于枯草菌素超家族的一个新家族。我们建议将这个新家族命名为碱性丝氨酸蛋白酶-X(AprX)。

结论

AprX-SK37 酶对 H2O2 的稳定性以及适度的耐卤化物和耐热性使其在各种生物技术应用中具有吸引力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30c1/3135529/52b30e143f7b/1472-6750-11-65-1.jpg

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