Wah David A, Levchenko Igor, Baker Tania A, Sauer Robert T
Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Chem Biol. 2002 Nov;9(11):1237-45. doi: 10.1016/s1074-5521(02)00268-5.
SspB, a specificity factor for the ATP-dependent ClpXP protease, stimulates proteolysis of protein substrates bearing the ssrA degradation tag. The SspB protein is shown here to form a stable homodimer with two independent binding sites for ssrA-tagged proteins or peptides. SspB by itself binds to ClpX and stimulates the ATPase activity of this enzyme. In the presence of ATPgammaS, a ternary complex of SspB, GFP-ssrA, and the ClpX ATPase was sufficiently stable to isolate by gel-filtration or ion-exchange chromatography. This complex consists of one SspB dimer, two molecules of GFP-ssrA, and one ClpX hexamer. SspB dimers do not commit bound substrates to ClpXP degradation but increase the affinity and cooperativity of binding of ssrA-tagged substrates to ClpX, facilitating enhanced degradation at low substrate concentrations.
SspB是一种依赖ATP的ClpXP蛋白酶的特异性因子,可刺激带有ssrA降解标签的蛋白质底物的蛋白水解。本文显示SspB形成稳定的同型二聚体,具有两个独立的ssrA标记蛋白或肽的结合位点。SspB自身与ClpX结合并刺激该酶的ATP酶活性。在存在ATPγS的情况下,SspB、GFP-ssrA和ClpX ATP酶的三元复合物足够稳定,可通过凝胶过滤或离子交换色谱法分离。该复合物由一个SspB二聚体、两个GFP-ssrA分子和一个ClpX六聚体组成。SspB二聚体不会使结合的底物进行ClpXP降解,但会增加ssrA标记底物与ClpX结合的亲和力和协同性,促进低底物浓度下的增强降解。