首页> 外文期刊>Biological & pharmaceutical bulletin >His151 and His296 are the acid-base catalytic residues of Bacillus cereus sphingomyelinase in sphingomyelin hydrolysis.
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His151 and His296 are the acid-base catalytic residues of Bacillus cereus sphingomyelinase in sphingomyelin hydrolysis.

机译:His151和His296是鞘氨醇水解中蜡状芽孢杆菌鞘磷脂酶的酸碱催化残基。

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摘要

Bacillus cereus sphingomyelinase belongs to the Mg(2+)-dependent neutral sphingomyelinase, which hydrolyses sphingomyelin to phosphocholine and ceramide, and acts as an extracellular hemolysin. The triplet residues, His151-Asp195-His296, of the enzyme are highly conserved among bacterial and mammalian Mg(2+)-dependent neutral sphingomyelinases. The triplet residues converge on the active-site pocket of the 3D model of the enzyme. To investigate the function of these residues in the acid-base catalysis, we introduced several mutations for each residue by site-directed mutagenesis. Hemolytic and hydrolytic activities of the enzyme, abolished by the mutations at Asp195 and His296, revealed that these residues are critical for the catalytic function. The effect of the divalent metal cations on the pH dependency of the hydrolytic activities indicates that His296 corresponds to the most acidic ionizable group as a general base. The mutagenesis at His151 was also deleterious; however, the H151A and H151Q mutant enzymes partially retained their activities. The H151A mutation affected the most basic ionizable group, suggesting that His151 may act as a general acid in catalysis. By the structural basis of the 3D model, Asp195 must maintain not only the appropriate spatial arrangement but also pK(a)s of His151 and His296. Taking into consideration all of these, we proposed the acid-base catalytic mechanism of B. cereus sphingomyelinase.
机译:蜡样芽胞杆菌鞘磷脂酶属于Mg(2+)依赖性中性鞘磷脂酶,其将鞘磷脂水解为磷酸胆碱和神经酰胺,并作为细胞外溶血素。该酶的三重态残基His151-Asp195-His296在细菌和哺乳动物Mg(2+)依赖性中性鞘磷脂酶中高度保守。三重态残基会聚在酶的3D模型的活性位点口袋上。为了研究这些残基在酸碱催化中的功能,我们通过定点诱变为每个残基引入了几种突变。该酶的溶血和水解活性被Asp195和His296的突变所消除,表明这些残基对于催化功能至关重要。二价金属阳离子对水解活性的pH依赖性的影响表明His296对应于最酸性的可电离基团作为一般碱。 His151的诱变也有害。但是,H151A和H151Q突变酶部分保留了它们的活性。 H151A突变影响了最碱性的可电离基团,表明His151可能在催化中起一般酸的作用。通过3D模型的结构基础,Asp195不仅必须保持适当的空间排列,还必须保持His151和His296的pK(a)。考虑到所有这些,我们提出了蜡状芽孢杆菌鞘磷脂酶的酸碱催化机理。

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