Piszczek Grzegorz, Rozycki Jan, Singh Satyendra K, Ginsburg Ann, Maurizi Michael R
Laboratory of Biochemistry, NHLBI, National Institutes of Health, Bethesda, MD 20892-8012, USA.
J Biol Chem. 2005 Apr 1;280(13):12221-30. doi: 10.1074/jbc.M411733200. Epub 2005 Jan 18.
Substrate recognition by Clp chaperones is dependent on interactions with motifs composed of specific peptide sequences. We studied the binding of short motif-bearing peptides to ClpA, the chaperone component of the ATP-dependent ClpAP protease of Escherichia coli in the presence of ATPgammaS and Mg2+ at pH 7.5. Binding was measured by isothermal titration calorimetry (ITC) using the peptide, AANDENYALAA, which corresponds to the SsrA degradation motif found at the C terminus of abnormal nascent polypeptides in vivo. One SsrA peptide was bound per hexamer of ClpA with an association constant (K(A)) of 5 x 10(6) m(-1). Binding was also assayed by changes in fluorescence of an N-terminal dansylated SsrA peptide, which bound with the same stoichiometry of one per ClpA hexamer (K(A) approximately 1 x 10(7) m(-1)). Similar results were obtained when ATP was substituted for ATPgammaS at 6 degrees C. Two additional peptides, derived from the phage P1 RepA protein and the E. coli HemA protein, which bear different substrate motifs, were competitive inhibitors of SsrA binding and bound to ClpA hexamers with K(A)' > 3 x 10(7) m(-1). DNS-SsrA bound with only slightly reduced affinity to deletion mutants of ClpA missing either the N-terminal domain or the C-terminal nucleotide-binding domain, indicating that the binding site for SsrA lies within the N-terminal nucleotide-binding domain. Because only one protein at a time can be unfolded and translocated by ClpA hexamers, restricting the number of peptides initially bound should avoid nonproductive binding of substrates and aggregation of partially processed proteins.
Clp伴侣蛋白对底物的识别依赖于与由特定肽序列组成的基序的相互作用。我们研究了在pH 7.5、存在ATPγS和Mg2+的条件下,携带短基序的肽与ClpA的结合,ClpA是大肠杆菌ATP依赖性ClpAP蛋白酶的伴侣蛋白组分。使用肽AANDENYALAA通过等温滴定量热法(ITC)测量结合,该肽对应于体内异常新生多肽C末端发现的SsrA降解基序。每个ClpA六聚体结合一个SsrA肽,缔合常数(K(A))为5×10(6) m(-1)。还通过N末端丹磺酰化SsrA肽的荧光变化测定结合,其以每个ClpA六聚体一个的相同化学计量比结合(K(A)约为1×10(7) m(-1))。在6℃用ATP替代ATPγS时获得了类似的结果。另外两个分别源自噬菌体P1 RepA蛋白和大肠杆菌HemA蛋白的肽,它们带有不同的底物基序,是SsrA结合的竞争性抑制剂,以K(A)' > 3×10(7) m(-1)与ClpA六聚体结合。DNS-SsrA与缺失N末端结构域或C末端核苷酸结合结构域的ClpA缺失突变体的结合亲和力仅略有降低,表明SsrA的结合位点位于N末端核苷酸结合结构域内。由于ClpA六聚体一次只能展开和转运一种蛋白质,限制最初结合的肽的数量应可避免底物的无效结合和部分加工蛋白质的聚集。