Miras Isabelle, Schaeffer Francis, Béguin Pierre, Alzari Pedro M
Unité Microbiologie et Environnement, URA 2172, CNRS, Institut Pasteur, 28, rue du Dr. Roux, 75724 Paris Cedex 15, France.
Biochemistry. 2002 Feb 19;41(7):2115-9. doi: 10.1021/bi011854e.
To locate the region involved in binding dockerin domains, 15 mutations were introduced across the surface of the seventh cohesin domain of the scaffolding protein CipA, which holds together the cellulosome of Clostridium thermocellum. Mutated residues were located on both faces of the nine-stranded beta-sandwich forming the cohesin domain and on the loops connecting beta-strands 4 and 5, 6 and 7, and 8 and 9. The loop region was previously proposed, on the basis of sequence comparisons, to form a contiguous "recognition strip". Individual mutants of four residues, D39, Y74, E86, and G89, formed no complexes detectable by nondenaturing gel electrophoresis after incubation with CelD664, a shortened form of endoglucanase CelD lacking the residues linking the catalytic domain with the dockerin domain. The four sensitive residues encompass a hydrophobic region on the 5-6-3-8 face of the molecule, which overlaps partially with the recognition strip and with a hydrophobic zone involved in the formation of cohesin-cohesin dimers. Isothermal titration calorimetry showed that single cohesin mutations affecting the binding of CelD664 had significant effects on the enthalpy or entropy of binding of wild-type CelD but much lesser effects on the association constant, owing to enthalpy-entropy compensation. However, the affinity for wild-type CelD of the triple mutant affecting D39, Y74, and E86 was reduced by 2 orders of magnitude, due to negative cooperativity between mutations affecting D39 + Y74 on one hand and E86 on the other hand.
为了确定与dockerin结构域结合相关的区域,在支架蛋白CipA的第七个粘着蛋白结构域表面引入了15个突变,CipA将嗜热栖热放线菌的纤维小体聚集在一起。突变残基位于形成粘着蛋白结构域的九链β-折叠的两个面上,以及连接β链4和5、6和7以及8和9的环上。基于序列比较,此前有人提出环区域会形成一个连续的“识别条带”。四个残基D39、Y74、E86和G89的单个突变体,在与内切葡聚糖酶CelD的缩短形式CelD664孵育后,通过非变性凝胶电泳检测不到形成的复合物,CelD664缺少将催化结构域与dockerin结构域连接的残基。这四个敏感残基包含分子5-6-3-8面上的一个疏水区域,该区域与识别条带以及参与粘着蛋白-粘着蛋白二聚体形成的一个疏水区域部分重叠。等温滴定量热法表明,影响CelD664结合的单个粘着蛋白突变对野生型CelD结合的焓或熵有显著影响,但由于焓-熵补偿,对缔合常数的影响要小得多。然而,由于影响D39 + Y74的突变与影响E86的突变之间存在负协同作用,影响D39、Y74和E86的三重突变体对野生型CelD的亲和力降低了2个数量级。