Fujii S, Inoue B, Yamamoto H, Ogata K, Shinki T, Inoue S, Tomita M, Tamura H, Tsukamoto K, Ikezawa H, Ikeda K
Department of Biochemistry, Osaka University of Pharmaceutical Sciences, Takatsuki, Osaka, 569-1094, Japan.
J Biochem. 1998 Dec 1;124(6):1178-87. doi: 10.1093/oxfordjournals.jbchem.a022236.
The modes of Mg2+ binding to SMase from Bacillus cereus were studied on the basis of the changes in the tryptophyl fluorescence intensity. This enzyme was shown to possess at least two binding sites for Mg2+ with low and high affinities. The effects of Mg2+ binding on the enzymatic activity and structural stability of the enzyme molecule were also studied. The results indicated that the binding of Mg2+ to the low-affinity site was essential for the catalysis, but was independent of the substrate binding to the enzyme. It was also indicated that the alkaline denaturation of the enzyme was partly prevented by the Mg2+ binding, whereas no significant protective effect was observed against the denaturation by urea. The pH dependence of the kinetic parameters for the hydrolysis of micellar HNP and mixed micellar SM with Triton X-100 (1:10), catalyzed by SMase from B. cereus, was studied in the presence of a large amount of Mg2+ to saturate both the low- and high-affinity sites. The pH dependence curves of the logarithm of 1/Km for these two kinds of substrates were similar in shape to each other, and showed a single transition. On the other hand, the shapes of the pH dependence curves of the logarithm of kcat for these two kinds of substrates were different from each other. The pH dependence curve for micellar HNP showed three transitions and, counting from the acidic end of the pH region, the first and third transitions having tangent lines with slopes of +1 and -1, respectively. On the other hand, the curve for mixed micellar SM with Triton X-100 showed one large transition with a slope of +1 (the first transition) and a very small transition (the third transition). On the basis of the present results and the three-dimensional structure of bovine pancreatic DNase I, which has a primary structure similar to that of B. cereus SMase, we proposed a catalytic mechanism for B. cereus SMase based on general-base catalysis.
基于色氨酸荧光强度的变化,研究了Mg2+与蜡状芽孢杆菌鞘磷脂酶(SMase)的结合模式。结果表明,该酶至少具有两个对Mg2+亲和力较低和较高的结合位点。还研究了Mg2+结合对酶分子的酶活性和结构稳定性的影响。结果表明,Mg2+与低亲和力位点的结合对催化作用至关重要,但与底物与酶的结合无关。还表明,Mg2+结合部分阻止了酶的碱性变性,而对尿素变性未观察到明显的保护作用。在存在大量Mg2+以使低亲和力和高亲和力位点都饱和的情况下,研究了蜡状芽孢杆菌SMase催化的胶束型HNP和与Triton X-100(1:10)混合的胶束型SM水解动力学参数的pH依赖性。这两种底物的1/Km对数的pH依赖性曲线形状彼此相似,并显示出单一转变。另一方面,这两种底物的kcat对数的pH依赖性曲线形状彼此不同。胶束型HNP的pH依赖性曲线显示出三个转变,从pH区域的酸性端开始计数,第一个和第三个转变的切线斜率分别为+1和-1。另一方面,与Triton X-100混合的胶束型SM的曲线显示出一个斜率为+1的大转变(第一个转变)和一个非常小的转变(第三个转变)。基于目前的结果以及与蜡状芽孢杆菌SMase一级结构相似的牛胰脱氧核糖核酸酶I的三维结构,我们提出了基于广义碱催化的蜡状芽孢杆菌SMase催化机制。