首页> 美国卫生研究院文献>Journal of Virology >Analysis of near-neighbor contacts in bacteriophage T4 wedges and hubless baseplates by using a cleavable chemical cross-linker.
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Analysis of near-neighbor contacts in bacteriophage T4 wedges and hubless baseplates by using a cleavable chemical cross-linker.

机译:使用可裂解的化学交联剂分析噬菌体T4楔形物和无轮毂底板中的近邻接触。

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摘要

Although bacteriophage T4 baseplate morphogenesis has been analyzed in some detail, there is little information available on the spatial arrangement and associations of its 150 subunits. We have therefore carried out the first analysis of its near-neighbor interactions by using the cleavable chemical cross-linker ethylene glycolbis(succinimidylsuccinate). In this report, we describe the cross-linked complexes that have been identified in the one-sixth arms or wedges and also in baseplatelike structures called rings consisting of six wedges but lacking the central hub, both of which are purified from T4 gene 5- -infected cells. Thirty different complexes were identified, of which about half contain multimers of a single species and half contain two different species. In general, the complexes reflect and support the assembly pathway derived by Kikuchi and King (Y. Kikuchi and J. King, J. Mol. Biol. 99:695-716, 1975) but broaden its scope to include such complexes as gp25-gp53, gp25-gp48, and gp48-gp53, which locate the gp48 binding site over the inner edge of the ring but outside the central hub. The data also supports the view that wedges are assembled from the outer edge inward toward the central hub. Wedge-wedge contact in rings was mediated primarily by gp12 and gp9, the absence of which dramatically destabilized the ring----wedge equilibrium in favor of wedges. Although no heterologous complexes containing gp9 were identified, gp12 contacts unique to rings were observed with both gp10 and gp11.
机译:尽管已经详细分析了噬菌体T4基板的形态,但是关于其150个亚基的空间排列和关联的信息很少。因此,我们通过使用可裂解的化学交联剂乙二醇双(琥珀酰亚胺基琥珀酸酯)对它的近邻相互作用进行了首次分析。在本报告中,我们描述了已经在六分之一臂或楔形以及在称为环的底板状结构中鉴定出的交联复合物,该环由六个楔形组成,但缺少中心轮毂,这两个结构都是从T4基因5纯化的感染的细胞。鉴定出三十种不同的复合物,其中约一半包含单一物种的多聚体,一半包含两种不同的物种。一般而言,复合物反映并支持Kikuchi和King推导的装配途径(Y. Kikuchi和J. King,分子生物学杂志99:695-716,1975),但将其范围扩大到包括gp25- gp53,gp25-gp48和gp48-gp53,它们将gp48结合位点定位在环的内边缘上方,但在中心集线器之外。数据还支持从外边缘向内向中心轮毂组装楔块的观点。环中的楔-楔接触主要由gp12和gp9介导,缺少它们会大大破坏环-楔的平衡,从而有利于楔形。尽管未鉴定出含有gp9的异源复合物,但在gp10和gp11上均观察到了环特有的gp12接触。

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