Gao D, McHenry C S
Department of Biochemistry and Molecular Genetics and Program in Molecular Biology, University of Colorado Health Sciences Center, Denver, Colorado 80262.
J Biol Chem. 2001 Feb 9;276(6):4433-40. doi: 10.1074/jbc.M009828200. Epub 2000 Nov 14.
The tau subunit dimerizes Escherichia coli DNA polymerase III core through interactions with the alpha subunit. In addition to playing critical roles in the structural organization of the holoenzyme, tau mediates intersubunit communications required for efficient replication fork function. We identified potential structural domains of this multifunctional subunit by limited proteolysis of C-terminal biotin-tagged tau proteins. The cleavage sites of each of eight different proteases were found to be clustered within four regions of the tau subunit. The second susceptible region corresponds to the hinge between domain II and III of the highly homologous delta' subunit, and the third region is near the C-terminal end of the tau-delta' alignment (Guenther, B., Onrust, R., Sali, A., O'Donnell, M., and Kuriyan, J. (1997) Cell 91, 335-345). We propose a five-domain structure for the tau protein. Domains I and II are based on the crystallographic structure of delta' by Guenther and colleagues. Domains III-V are based on our protease cleavage results. Using this information, we expressed biotin-tagged tau proteins lacking specific protease-resistant domains and analyzed their binding to the alpha subunit by surface plasmon resonance. Results from these studies indicated that the alpha binding site of tau lies within its C-terminal 147 residues (domain V).
τ亚基通过与α亚基相互作用使大肠杆菌DNA聚合酶III核心二聚化。除了在全酶的结构组织中发挥关键作用外,τ还介导有效复制叉功能所需的亚基间通讯。我们通过对C端生物素标记的τ蛋白进行有限蛋白酶解来鉴定这个多功能亚基的潜在结构域。发现八种不同蛋白酶各自的切割位点聚集在τ亚基的四个区域内。第二个敏感区域对应于高度同源的δ'亚基的结构域II和III之间的铰链区,第三个区域靠近τ-δ'比对的C末端(根特,B.,翁鲁斯特,R.,萨利,A.,奥唐奈,M.,和库里扬,J.(1997年)《细胞》91卷,335 - 345页)。我们提出τ蛋白的五结构域结构。结构域I和II基于根特及其同事解析的δ'的晶体结构。结构域III - V基于我们的蛋白酶切割结果。利用这些信息,我们表达了缺少特定抗蛋白酶结构域的生物素标记的τ蛋白,并通过表面等离子体共振分析它们与α亚基的结合。这些研究结果表明,τ的α结合位点位于其C末端的147个残基内(结构域V)。