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λ噬菌体DNA复制的起始。大肠杆菌小分子热休克蛋白DnaJ和GrpE可增强DnaK对λ噬菌体P蛋白的亲和力。

Initiation of lambda DNA replication. The Escherichia coli small heat shock proteins, DnaJ and GrpE, increase DnaK's affinity for the lambda P protein.

作者信息

Osipiuk J, Georgopoulos C, Zylicz M

机构信息

Department of Molecular Biology, University of Gdansk, Poland.

出版信息

J Biol Chem. 1993 Mar 5;268(7):4821-7.

PMID:8444859
Abstract

It is known that the initiation of bacteriophage lambda replication requires the orderly assembly of the lambda O.lambda P.DnaB helicase protein preprimosomal complex at the ori lambda DNA site. The DnaK, DnaJ, and GrpE heat shock proteins act together to destabilize the lambda P.DnaB complex, thus freeing DnaB and allowing it to unwind lambda DNA near the ori lambda site. The first step of this disassembly reaction is the binding of DnaK to the lambda P protein. In this report, we examined the influence of the DnaJ and GrpE proteins on the stability of the lambda P.DnaK complex. We present evidence for the existence of the following protein-protein complexes: lambda P.DnaK, lambda P.DnaJ, DnaJ.DnaK, DnaK.GrpE, and lambda P.DnaK.GrpE. Our results suggest that the presence of GrpE alone destabilizes the lambda P.DnaK complex, whereas the presence of DnaJ alone stabilizes the lambda P.DnaK complex. Using immunoprecipitation, we show that in the presence of GrpE, DnaK exhibits a higher affinity for the lambda P.DnaJ complex than it does alone. Using cross-linking with glutaraldehyde, we show that oligomeric forms of DnaK exhibit a higher affinity for lambda P than monomeric DnaK. However, in the presence of GrpE, monomeric DnaK can efficiently bind lambda P protein. These findings help explain our previous results, namely that in the GrpE-dependent lambda DNA replication system, the DnaK protein requirement can be reduced up to 10-fold.

摘要

已知噬菌体λ复制的起始需要在ori λ DNA位点有序组装λ O.λ P.DnaB解旋酶蛋白预引发体复合物。DnaK、DnaJ和GrpE热休克蛋白共同作用使λ P.DnaB复合物不稳定,从而释放DnaB并使其在ori λ位点附近解开λ DNA。这种解离反应的第一步是DnaK与λ P蛋白结合。在本报告中,我们研究了DnaJ和GrpE蛋白对λ P.DnaK复合物稳定性的影响。我们提供了以下蛋白质 - 蛋白质复合物存在的证据:λ P.DnaK、λ P.DnaJ、DnaJ.DnaK、DnaK.GrpE和λ P.DnaK.GrpE。我们的结果表明,单独存在GrpE会使λ P.DnaK复合物不稳定,而单独存在DnaJ会使λ P.DnaK复合物稳定。通过免疫沉淀,我们表明在存在GrpE的情况下,DnaK对λ P.DnaJ复合物的亲和力比其单独存在时更高。使用戊二醛交联,我们表明DnaK的寡聚形式对λ P的亲和力高于单体DnaK。然而,在存在GrpE的情况下,单体DnaK可以有效地结合λ P蛋白。这些发现有助于解释我们之前的结果,即在依赖GrpE的λ DNA复制系统中,DnaK蛋白的需求可降低多达10倍。

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