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Structural analysis of bacteriophage T4 DNA replication: a review in the Virology Journal series on bacteriophage T4 and its relatives

机译:噬菌体T4 DNA复制的结构分析:病毒学杂志系列中有关噬菌体T4及其亲属的评论

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The bacteriophage T4 encodes 10 proteins, known collectively as the replisome, that are responsible for the replication of the phage genome. The replisomal proteins can be subdivided into three activities; the replicase, responsible for duplicating DNA, the primosomal proteins, responsible for unwinding and Okazaki fragment initiation, and the Okazaki repair proteins. The replicase includes the gp43 DNA polymerase, the gp45 processivity clamp, the gp44/62 clamp loader complex, and the gp32 single-stranded DNA binding protein. The primosomal proteins include the gp41 hexameric helicase, the gp61 primase, and the gp59 helicase loading protein. The RNaseH, a 5' to 3' exonuclease and T4 DNA ligase comprise the activities necessary for Okazaki repair. The T4 provides a model system for DNA replication. As a consequence, significant effort has been put forth to solve the crystallographic structures of these replisomal proteins. In this review, we discuss the structures that are available and provide comparison to related proteins when the T4 structures are unavailable. Three of the ten full-length T4 replisomal proteins have been determined; the gp59 helicase loading protein, the RNase H, and the gp45 processivity clamp. The core of T4 gp32 and two proteins from the T4 related phage RB69, the gp43 polymerase and the gp45 clamp are also solved. The T4 gp44/62 clamp loader has not been crystallized but a comparison to the E. coli gamma complex is provided. The structures of T4 gp41 helicase, gp61 primase, and T4 DNA ligase are unknown, structures from bacteriophage T7 proteins are discussed instead. To better understand the functionality of T4 DNA replication, in depth structural analysis will require complexes between proteins and DNA substrates. A DNA primer template bound by gp43 polymerase, a fork DNA substrate bound by RNase H, gp43 polymerase bound to gp32 protein, and RNase H bound to gp32 have been crystallographically determined. The preparation and crystallization of complexes is a significant challenge. We discuss alternate approaches, such as small angle X-ray and neutron scattering to generate molecular envelopes for modeling macromolecular assemblies.
机译:T4噬菌体编码10种蛋白质,统称为复制体,负责噬菌体基因组的复制。复制体蛋白可细分为三个活性。负责复制DNA的复制酶,负责解链和Okazaki片段起始的原始染色体蛋白以及Okazaki修复蛋白。复制酶包括gp43 DNA聚合酶,gp45合成钳位,gp44 / 62钳位装载物复合物和gp32单链DNA结合蛋白。原始蛋白质包括gp41六聚解旋酶,gp61 primase和gp59解旋酶负载蛋白。 RNaseH,5'至3'核酸外切酶和T4 DNA连接酶包含冈崎修复所必需的活性。 T4提供了用于DNA复制的模型系统。结果,已经做出了巨大的努力来解决这些复制体蛋白的晶体学结构。在这篇综述中,我们讨论了可用的结构,并在T4结构不可用时与相关蛋白进行了比较。已经确定了十个全长T4复制体蛋白中的三个。 gp59解旋酶负载蛋白,RNase H和gp45合成钳位。还解析了T4 gp32的核心以及来自T4相关噬菌体RB69的两种蛋白质,gp43聚合酶和gp45钳。 T4 gp44 / 62钳式装载机尚未结晶,但提供了与大肠杆菌伽玛复合物的比较。 T4 gp41解旋酶,gp61 primase和T4 DNA连接酶的结构是未知的,而是讨论了噬菌体T7蛋白的结构。为了更好地理解T4 DNA复制的功能,深入的结构分析将需要蛋白质和DNA底物之间的复合物。已经通过晶体学确定了与gp43聚合酶结合的DNA引物模板,与RNase H结合的叉子DNA底物,与gp32蛋白质结合的gp43聚合酶和与gp32结合的RNaseH。配合物的制备和结晶是一项重大挑战。我们讨论了替代方法,例如小角度X射线和中子散射,以生成用于模拟大分子组装的分子包膜。

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