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首页> 外文期刊>Protein Science: A Publication of the Protein Society >A model of the acid sphingomyelinase phosphoesterase domain based on its remote structural homolog purple acid phosphatase.
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A model of the acid sphingomyelinase phosphoesterase domain based on its remote structural homolog purple acid phosphatase.

机译:酸性鞘磷脂酶磷酸酯酶结构域的模型,基于其远程结构同源紫色酸性磷酸酶。

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摘要

Sequence profile and fold recognition methods identified mammalian purple acid phosphatase (PAP), a member of a dimetal-containing phosphoesterase (DMP) family, as a remote homolog of human acid sphingomyelinase (ASM). A model of the phosphoesterase domain of ASM was built based on its predicted secondary structure and the metal-coordinating residues of PAP. Due to the low sequence identity between ASM and PAP (~15%), the highest degree of confidence in the model resides in the metal-binding motifs. The ASM model predicts residues Asp 206, Asp 278, Asn 318, His 425, and His 457 to be dimetal coordinating. A putative orientation for the phosphorylcholine head group of the ASM substrate, sphingomyelin (SM), was made based on the predicted catalysis of the phosphorus-oxygen bond in the active site of ASM and on a structural comparison of the PAP-phosphate complex to the C-reactive protein-phosphorylcholine complex. These complexes revealed similar spatial interactions between the metal-coordinating residues, the metals, and the phosphate groups, suggesting a putative orientation for the head group in ASM consistent with the mechanism considerations. A conserved sequence motif in ASM, NX(3)CX(3)N, was identified (Asn 381 to Asn 389) and is predicted to interact with the choline amine moiety in SM. The resulting ASM model suggests that the enzyme uses an S(N)2-type catalytic mechanism to hydrolyze SM, similar to other DMPs. His 319 in ASM is predicted to protonate the ceramide-leaving group in the catalysis of SM. The putative functional roles of several ASM Niemann-Pick missense mutations, located in the predicted phosphoesterase domain, are discussed in context to the model.
机译:序列分析和倍数识别方法将哺乳动物的紫色酸性磷酸酶(PAP)(一种含双金属的磷酸酯酶(DMP)家族的成员)鉴定为人酸性鞘磷脂酶(ASM)的远程同源物。基于其预测的二级结构和PAP的金属配位残基,建立了ASM磷酸酯酶结构域的模型。由于ASM和PAP之间的序列同一性较低(〜15%),因此模型的最高可信度在于金属结合基序。 ASM模型预测残基Asp 206,Asp 278,Asn 318,His 425和His 457是双金属配位的。基于对ASM活性位点中磷-氧键的预期催化作用以及PAP-磷酸盐复合物与ASM的结构比较,确定了ASM底物磷酸胆碱头部基团的鞘氨醇(SM)的推定方向。 C反应蛋白-磷酸胆碱复合物。这些配合物揭示了金属配位残基,金属和磷酸基团之间的相似空间相互作用,表明ASM中首基的推定方向与机理考虑一致。在ASM中,一个保守的序列基序NX(3)CX(3)N被确定(从Asn 381到Asn 389),并被预测与SM中的胆碱胺部分相互作用。所得的ASM模型表明,该酶使用S(N)2型催化机制来水解SM,类似于其他DMP。预计他在ASM中的319可以使SM催化中的神经酰胺离去基团质子化。在模型的上下文中讨论了位于预测的磷酸酯酶结构域中的几个ASM Niemann-Pick错义突变的推定功能性作用。

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