首页> 美国卫生研究院文献>Journal of Virology >Specificity of the hepatitis C virus NS3 serine protease: effects of substitutions at the 3/4A 4A/4B 4B/5A and 5A/5B cleavage sites on polyprotein processing.
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Specificity of the hepatitis C virus NS3 serine protease: effects of substitutions at the 3/4A 4A/4B 4B/5A and 5A/5B cleavage sites on polyprotein processing.

机译:丙型肝炎病毒NS3丝氨酸蛋白酶的特异性:在3 / 4A4A / 4B4B / 5A和5A / 5B裂解位点的取代对多蛋白加工的影响。

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摘要

Cleavage at four sites (3/4A, 4A/4B, 4B/5A, and 5A/5B) in the hepatitis C virus polyprotein requires a viral serine protease activity residing in the N-terminal one-third of the NS3 protein. Sequence comparison of the residues flanking these cleavage sites reveals conserved features including an acidic residue (Asp or Glu) at the P6 position, a Cys or Thr residue at the P1 position, and a Ser or Ala residue at the P1' position. In this study, we used site-directed mutagenesis to assess the importance of these and other residues for NS3 protease-dependent cleavages. Substitutions at the P7 to P2' positions of the 4A/4B site had varied effects on cleavage efficiency. Only Arg at the P1 position or Pro at P1' substantially blocked processing at this site. Leu was tolerated at the P1 position, whereas five other substitutions allowed various degrees of cleavage. Substitutions with positively charged or other hydrophilic residues at the P7, P3, P2, and P2' positions did not reduce cleavage efficiency. Five substitutions examined at the P6 position allowed complete cleavage, demonstrating that an acidic residue at this position is not essential. Parallel results were obtained with substrates containing an active NS3 protease domain in cis or when the protease domain was supplied in trans. Selected substitutions blocking or inhibiting cleavage at the 4A/4B site were also examined at the 3/4A, 4B/5A, and 5A/5B sites. For a given substitution, a site-dependent gradient in the degree of inhibition was observed, with a 3/4A site being least sensitive to mutagenesis, followed by the 4A/4B, 4B/5A, and 5A/5B sites. In most cases, mutations abolishing cleavage at one site did not affect processing at the other serine protease-dependent sites. However, mutations at the 3/4A site which inhibited cleavage also interfered with processing at the 4B/5A site. Finally, during the course of these studies an additional NS3 protease-dependent cleavage site has been identified in the NS4B region.
机译:在丙型肝炎病毒多蛋白的四个位点(3 / 4A,4A / 4B,4B / 5A和5A / 5B)进行切割需要在NS3蛋白的N端三分之一处存在病毒丝氨酸蛋白酶活性。这些切割位点侧翼的残基的序列比较揭示了保守的特征,包括在P6位的酸性残基(Asp或Glu),在P1位的Cys或Thr残基以及在P1'位的Ser或Ala残基。在这项研究中,我们使用了定点诱变来评估这些和其他残基对NS3蛋白酶依赖性切割的重要性。 4A / 4B位点的P7至P2'位置的取代对裂解效率有不同的影响。仅在P1位置的Arg或P1'的Pro基本上阻止了该位点的加工。 Leu在P1位置是可以容忍的,而其他五个取代则允许不同程度的裂解。在P7,P3,P2和P2'位置带有正电荷或其他亲水残基的取代不会降低切割效率。在P6位置检测到的五个取代允许完全裂解,表明该位置的酸性残基不是必需的。使用在顺式中或当反式提供蛋白酶结构域时包含活性NS3蛋白酶结构域的底物可获得平行结果。还在3 / 4A,4B / 5A和5A / 5B位点检查了在4A / 4B位点阻断或抑制切割的取代基。对于给定的取代,观察到抑制程度的位点依赖性梯度,其中3 / 4A位点对诱变最不敏感,其次是4A / 4B,4B / 5A和5A / 5B位点。在大多数情况下,消除一个位点切割的突变不会影响其他丝氨酸蛋白酶依赖性位点的加工。但是,在3 / 4A位点的突变抑制了切割,也干扰了在4B / 5A位点的加工。最后,在这些研究过程中,在NS4B区域中发现了另外的NS3蛋白酶依赖性切割位点。

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