噬菌体T7原衣壳组装、成熟和DNA遏制的分子机制。

Mario E Cerritelli, James F Conway, Naiqian Cheng, Benes L Trus, Alasdair C Steven
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引用次数: 63

摘要

T7噬菌体是一种双链DNA噬菌体,在基因表达和调控、形态发生以及表达载体和噬菌体展示的生物技术应用研究中引起了特别的兴趣。我们在此报告了低温电子显微镜和图像分析对T7衣壳组装的研究。T7遵循首先形成转化为成熟衣壳的原衣壳的典型途径,但有一些新的变异。原衣壳是由正五聚体和细长六聚体组成的圆形粒子,其二十面体三角形数为7左。连接蛋白/门脉蛋白占据原衣壳的一个单一顶点,当过表达时形成12倍和13倍的环,其中12-mer似乎是装配能力形式。这个顶点是两个对称不匹配的地方:在连接器和周围的五个gp10六聚体之间;并在连接器与安装在其内表面的8折圆柱形芯之间。组装所需的支架蛋白gp9在六聚体而不是五聚体下面形成球状突起,相邻的gp9单体之间没有接触。我们提出gp9通过结合gp10六聚体来促进组装,将它们锁定在形态上正确的构象中。当原衣壳成熟为更大、壁更薄的多面体衣壳时,Gp9被排出体外。几条线索的证据表明,连接器顶点是成熟转化开始的位置:在体内,成熟似乎是由DNA包装触发的,其中信号可能涉及连接器与DNA的相互作用。在成熟的T7头中,DNA被组织成紧密缠绕的同轴线轴,DNA盘绕在核心周围,至少有四个,也许多达六个同心壳。
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Molecular mechanisms in bacteriophage T7 procapsid assembly, maturation, and DNA containment.

Bacteriophage T7 is a double-stranded DNA bacteriophage that has attracted particular interest in studies of gene expression and regulation and of morphogenesis, as well as in biotechnological applications of expression vectors and phage display. We report here studies of T7 capsid assembly by cryoelectron microscopy and image analysis. T7 follows the canonical pathway of first forming a procapsid that converts into the mature capsid, but with some novel variations. The procapsid is a round particle with an icosahedral triangulation number of 7 levo, composed of regular pentamers and elongated hexamers. A singular vertex in the procapsid is occupied by the connector/portal protein, which forms 12-fold and 13-fold rings when overexpressed, of which the 12-mer appears to be the assembly-competent form. This vertex is the site of two symmetry mismatches: between the connector and the surrounding five gp 10 hexamers; and between the connector and the 8-fold cylindrical core mounted on its inner surface. The scaffolding protein, gp9, which is required for assembly, forms nubbin-like protrusions underlying the hexamers but not the pentamers, with no contacts between neighboring gp9 monomers. We propose that gp9 facilitates assembly by binding to gp10 hexamers, locking them into a morphogenically correct conformation. gp9 is expelled as the procapsid matures into the larger, thinner walled, polyhedral capsid. Several lines of evidence implicate the connector vertex as the site at which the maturation transformation is initiated: in vivo, maturation appears to be triggered by DNA packaging whereby the signal may involve interaction of the connector with DNA. In the mature T7 head, the DNA is organized as a tightly wound coaxial spool, with the DNA coiled around the core in at least four and perhaps as many as six concentric shells.

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