Hoffmann H J, Lyman S K, Lu C, Petit M A, Echols H
Division of Biochemistry and Molecular Biology, University of California, Berkeley 94720.
Proc Natl Acad Sci U S A. 1992 Dec 15;89(24):12108-11. doi: 10.1073/pnas.89.24.12108.
Initiation of DNA replication by phage lambda requires the ordered assembly and disassembly of a specialized nucleoprotein structure at the origin of replication. In the disassembly pathway, a set of Escherichia coli heat shock proteins termed the Hsp70 complex--DnaK, DnaJ, and GrpE--act with ATP to release lambda P protein from the nucleo-protein complex, freeing the DnaB helicase for its DNA-unwinding reaction. To investigate the mechanism of the release reaction, we have examined the interaction between P and the three heat shock proteins by glycerol gradient sedimentation and gel electrophoresis. We have discovered an ATP-dependent ternary interaction between P, DnaK, and DnaJ; this P.DnaK.DnaJ complex is dissociated by GrpE. We have concluded that the function of the Hsp70 complex in sequestering and releasing P protein provides for the critical step in the disassembly pathway. Based on our data and other work on protein folding, the formation of the P.DnaK.DnaJ complex might involve a conformational shift to a folding intermediate of P.
噬菌体λ引发DNA复制需要在复制起点处有序组装和拆卸一种特殊的核蛋白结构。在拆卸途径中,一组被称为Hsp70复合体(DnaK、DnaJ和GrpE)的大肠杆菌热休克蛋白与ATP共同作用,从核蛋白复合体中释放λ P蛋白,使DnaB解旋酶能够进行DNA解旋反应。为了研究释放反应的机制,我们通过甘油梯度沉降和凝胶电泳研究了P与这三种热休克蛋白之间的相互作用。我们发现P、DnaK和DnaJ之间存在一种依赖ATP的三元相互作用;这种P.DnaK.DnaJ复合体被GrpE解离。我们得出结论,Hsp70复合体在隔离和释放P蛋白方面的功能是拆卸途径中的关键步骤。根据我们的数据以及其他关于蛋白质折叠的研究,P.DnaK.DnaJ复合体的形成可能涉及P向折叠中间体的构象转变。