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首页> 外文期刊>Archives of Biochemistry and Biophysics >Substrate specificity of recombinant dengue 2 virus NS2B-NS3 protease: Influence of natural and unnatural basic amino acids on hydrolysis of synthetic fluorescent substrates
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Substrate specificity of recombinant dengue 2 virus NS2B-NS3 protease: Influence of natural and unnatural basic amino acids on hydrolysis of synthetic fluorescent substrates

机译:重组登革热2病毒NS2B-NS3蛋白酶的底物特异性:天然和非天然碱性氨基酸对合成荧光底物水解的影响

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A recombinant dengue 2 virus NS2B-NS3 protease (NS means non-structural virus protein) was compared with human furin for the capacity to process short peptide substrates corresponding to seven native Substrate cleavage sites in the dengue viral polyprotein. Using fluorescence resonance energy transfer peptides to measure kinetics, the processing of these substrates was found to be selective for the Dengue protease. Substrates containing two or three basic amino acids (Arg or Lys) in tandem were found to be the best, with Abz-AKRRSQ-EDDnp being the most efficiently cleaved. The hydrolysis of dipeptide substrates Bz-X-Arg-MCA where X is a non-natural basic amino acid were also kinetically examined, the best substrates containing aliphatic basic amino acids. Our results indicated that proteolytic processing by dengue NS3 protease, tethered to its activating NS2B co-factor, was strongly inhibited by Ca2+ and kosmotropic salts of the Hofmeister's series, and significantly influenced by substrate modifications between S-4 and S'. Incorporation of basic non-natural amino acids in short peptide substrates had significant but differential effects on K-m and k(cat) suggesting that further dissection of their influences on substrate affinity might enable the development of effective dengue protease inhibitors. (c) 2006 Elsevier Inc. All rights reserved.
机译:将重组登革热2病毒NS2B-NS3蛋白酶(NS表示非结构性病毒蛋白)与人类弗林蛋白酶进行比较,以处理对应于登革热病毒多蛋白中七个天然底物切割位点的短肽底物的能力。使用荧光共振能量转移肽测量动力学,发现这些底物的加工对登革热蛋白酶具有选择性。发现串联包含两个或三个碱性氨基酸(Arg或Lys)的底物是最好的,而Abz-AKRRSQ-EDDnp的裂解效率最高。还动力学检查了二肽底物Bz-X-Arg-MCA的水解,其中X是非天然碱性氨基酸,最好的底物包含脂肪族碱性氨基酸。我们的结果表明,登革热NS3蛋白酶的蛋白水解过程,与它的活化NS2B辅助因子相关,被Hofmeister系列的Ca2 +和同渗盐强烈抑制,并且受S-4和S'之间底物修饰的影响很大。在短肽底物中掺入碱性非天然氨基酸具有显着但对K-m和k(cat)的影响,这表明进一步剖析其对底物亲和力的影响可能使开发有效的登革热蛋白酶抑制剂成为可能。 (c)2006 Elsevier Inc.保留所有权利。

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