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错义突变对髓过氧化物酶生物合成的影响。

Impact of missense mutations on biosynthesis of myeloperoxidase.

作者信息

Nauseef W M, McCormick S, Goedken M

机构信息

Inflammation Program and Department of Medicine, University of Iowa, and Veterans Affairs Medical Center at Iowa City, 52422, USA.

出版信息

Redox Rep. 2000;5(4):197-206. doi: 10.1179/135100000101535753.

DOI:10.1179/135100000101535753
PMID:10994874
Abstract

We have examined the biosynthesis of normal and mutant forms of myeloperoxidase (MPO) in order to gain insights into the critical features of normal biogenesis of MPO. The expression of wild-type and mutant forms of MPO in a stably transfected cell line devoid of endogenous MPO as well as in established human promyelocytic cell lines has allowed understanding of several features of MPO biosynthesis. It is clear that heme insertion into apoproMPO is necessary for proper folding, egress from the endoplasmic reticulum (ER), and eventual entry into the maturation pathway. In addition, molecular chaperones calreticulin and calnexin interact with normal MPO precursors in a sequential and regulated fashion. Studies of naturally occurring mutants, specifically missense mutations underlying inherited MPO deficiency, and mutations in putatively important residues in MPO have highlighted special features of the ER quality control system in the context of MPO biosynthesis. With identification of additional genotypes of MPO deficiency and the recent solution of MPO crystal structure at 1.8 A, this approach provides a powerful technique to assess structure-function relationships in MPO that are likely applicable to other members of the family of animal peroxidases.

摘要

我们研究了正常和突变形式的髓过氧化物酶(MPO)的生物合成,以便深入了解MPO正常生物合成的关键特征。在缺乏内源性MPO的稳定转染细胞系以及已建立的人早幼粒细胞系中表达野生型和突变型MPO,有助于了解MPO生物合成的几个特征。很明显,血红素插入脱辅基MPO对于正确折叠、从内质网(ER)排出以及最终进入成熟途径是必要的。此外,分子伴侣钙网蛋白和钙连蛋白以顺序和受调控的方式与正常MPO前体相互作用。对自然发生的突变体的研究,特别是遗传性MPO缺乏症潜在的错义突变,以及MPO中假定重要残基的突变,突出了MPO生物合成背景下ER质量控制系统的特殊特征。随着MPO缺乏症其他基因型的鉴定以及最近MPO晶体结构在1.8埃分辨率下的解析,这种方法提供了一种强大的技术来评估MPO中的结构-功能关系,这些关系可能适用于动物过氧化物酶家族的其他成员。

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1
Impact of missense mutations on biosynthesis of myeloperoxidase.错义突变对髓过氧化物酶生物合成的影响。
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2
Quality control in the endoplasmic reticulum: lessons from hereditary myeloperoxidase deficiency.内质网中的质量控制:来自遗传性髓过氧化物酶缺乏症的教训。
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Coordinated participation of calreticulin and calnexin in the biosynthesis of myeloperoxidase.钙网蛋白和钙连蛋白在髓过氧化物酶生物合成中的协同参与。
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Impact of two novel mutations on the structure and function of human myeloperoxidase.两种新突变对人髓过氧化物酶结构和功能的影响。
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Calreticulin functions as a molecular chaperone in the biosynthesis of myeloperoxidase.钙网蛋白在髓过氧化物酶的生物合成中作为分子伴侣发挥作用。
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A novel form of hereditary myeloperoxidase deficiency linked to endoplasmic reticulum/proteasome degradation.一种与内质网/蛋白酶体降解相关的新型遗传性髓过氧化物酶缺乏症。
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Insights into myeloperoxidase biosynthesis from its inherited deficiency.从髓过氧化物酶遗传性缺乏症看其生物合成机制
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