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噬菌体P22的DNA包装机器(门户蛋白)亚基半胱氨酸在折叠和组装中的结构作用。

Structural roles of subunit cysteines in the folding and assembly of the DNA packaging machine (portal) of bacteriophage P22.

作者信息

Rodríguez-Casado Arantxa, Thomas George J

机构信息

Division of Cell Biology and Biophysics, School of Biological Sciences, University of Missouri-Kansas City, 64110-2499, USA.

出版信息

Biochemistry. 2003 Apr 1;42(12):3437-45. doi: 10.1021/bi020678m.

Abstract

The DNA packaging machine (portal assembly) of bacteriophage P22 is constructed from 12 copies of a multidomain 725-residue subunit comprising a complex alpha/beta fold. The portal subunit contains four cysteines (Cys 153, Cys 173, Cys 283, and Cys 516), which produce distinctive Raman markers in the spectral interval 2500-2600 cm(-1) originating from S-H bond-stretching vibrations diagnostic of S-H...X hydrogen-bonding interactions. The Raman spectrum is unique in the capability to characterize cysteine sulfhydryl interactions in proteins and shows that portal cysteine environments are significantly altered by assembly (Rodriguez-Casado et al. (2001) Biochemistry 40, 13583-13591). We have employed site-directed mutagenesis, size-exclusion chromatography, and Raman difference spectroscopy to characterize the roles of portal cysteines in subunit folding and dodecamer assembly. The stability of the portal monomer is severely reduced by a Cys --> Ser point mutation introduced at either residue 173 or 516. In the case of C516S, the destabilized monomer still forms portal rings, as visualized by negative-stain electron microscopy, whereas portal ring formation cannot be detected for C173S, which forms aberrant aggregates. The C283S mutant is a hyperstable monomer that is defective in portal ring formation. Interestingly, Cys 283 is suggested by secondary structure homology with the phi29 portal to be within a domain involved in DNA translocation. Conversely, the phenotype of the C153S mutant is close to that of the wild-type protein, implying that the sulfhydryl moiety of Cys 153 is not essential to formation of the native subunit fold and productive assembly dynamics. The present results demonstrate that cysteines of the P22 portal protein span a wide range of sulfhydryl hydrogen-bonding strengths in the wild-type assembly, that three of the four sulfhydryls play key roles in portal protein stability and assembly kinetics, and that substitution of a mutant seryl interaction (O-H...X) for a wild-type cysteinyl interaction (S-H...X) can either stabilize or destabilize the native fold depending upon sequence context.

摘要

噬菌体P22的DNA包装机器(门户组装体)由12个多结构域的725个残基亚基组成,这些亚基具有复杂的α/β折叠结构。门户亚基包含四个半胱氨酸(Cys 153、Cys 173、Cys 283和Cys 516),它们在2500 - 2600 cm(-1)光谱区间产生独特的拉曼标记,源于S - H键拉伸振动,可诊断S - H...X氢键相互作用。拉曼光谱在表征蛋白质中半胱氨酸巯基相互作用方面具有独特能力,表明门户半胱氨酸环境在组装过程中发生了显著变化(Rodriguez - Casado等人(2001年)《生物化学》40卷,13583 - 13591页)。我们利用定点诱变、尺寸排阻色谱和拉曼差光谱来表征门户半胱氨酸在亚基折叠和十二聚体组装中的作用。在残基173或516处引入的Cys→Ser点突变会严重降低门户单体的稳定性。对于C516S,不稳定的单体仍能形成门户环,通过负染电子显微镜可观察到,而对于形成异常聚集体的C173S,无法检测到门户环的形成。C283S突变体是一种超稳定单体,在门户环形成方面存在缺陷。有趣的是,通过与phi29门户的二级结构同源性推测,Cys 283位于参与DNA转运的结构域内。相反,C153S突变体的表型与野生型蛋白接近,这意味着Cys 153的巯基部分对于天然亚基折叠的形成和有效的组装动力学并非必不可少。目前的结果表明,P22门户蛋白的半胱氨酸在野生型组装中具有广泛的巯基氢键强度范围,四个巯基中的三个在门户蛋白稳定性和组装动力学中起关键作用,并且用突变的丝氨酰相互作用(O - H...X)替代野生型半胱氨酰相互作用(S - H...X)根据序列背景可使天然折叠稳定或不稳定。

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