Openshaw Amy E A, Race Paul R, Monzó Hector J, Vázquez-Boland José-Antonio, Banfield Mark J
Institute for Cell and Molecular Biosciences, University of Newcastle upon Tyne, Framlington Place, Newcastle upon Tyne, NE2 4HH United Kingdom.
J Biol Chem. 2005 Oct 14;280(41):35011-7. doi: 10.1074/jbc.M506800200. Epub 2005 Aug 10.
Sphingomyelinases C are enzymes that catalyze the hydrolysis of sphingomyelin in biological membranes to ceramide and phosphorylcholine. Various pathogenic bacteria produce secreted neutral sphingomyelinases C that act as membrane-damaging virulence factors. Mammalian neutral sphingomyelinases C, which display sequence homology to the bacterial enzymes, are involved in sphingolipid metabolism and signaling. This article describes the first structure to be determined for a member of the neutral sphingomyelinase C family, SmcL, from the intracellular bacterial pathogen Listeria ivanovii. The structure has been refined to 1.9-A resolution with phases derived by single isomorphous replacement with anomalous scattering techniques from a single iridium derivative. SmcL adopts a DNase I-like fold, and is the first member of this protein superfamily to have its structure determined that acts as a phospholipase. The structure reveals several unique features that adapt the protein to its phospholipid substrate. These include large hydrophobic beta-hairpin and hydrophobic loops surrounding the active site that may bind and penetrate the lipid bilayer to position sphingomyelin in a catalytically competent position. The structure also provides insight into the proposed general base/acid catalytic mechanism, in which His-325 and His-185 play key roles.
鞘磷脂酶C是一类能催化生物膜中的鞘磷脂水解生成神经酰胺和磷酸胆碱的酶。多种致病细菌会分泌中性鞘磷脂酶C,这些酶作为破坏细胞膜的毒力因子发挥作用。与细菌酶具有序列同源性的哺乳动物中性鞘磷脂酶C参与鞘脂代谢和信号传导。本文描述了来自细胞内细菌病原体伊凡诺夫李斯特菌的中性鞘磷脂酶C家族成员SmcL的首个确定结构。该结构已通过单波长反常散射技术从单个铱衍生物进行单同晶置换得到的相位精修至1.9埃分辨率。SmcL采用了类似脱氧核糖核酸酶I的折叠方式,并且是该蛋白质超家族中首个其结构被确定的作为磷脂酶的成员。该结构揭示了使该蛋白质适应其磷脂底物的几个独特特征。这些特征包括围绕活性位点的大的疏水β-发夹结构和疏水环,它们可能结合并穿透脂质双层,将鞘磷脂定位在催化活性位置。该结构还为所提出的一般酸碱催化机制提供了见解,其中His-325和His-185发挥关键作用。