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与mut型甲基丙二酸血症相关的甲基丙二酰辅酶A变位酶突变的聚类分析

Clustering of mutations in methylmalonyl CoA mutase associated with mut- methylmalonic acidemia.

作者信息

Crane A M, Ledley F D

机构信息

Department of Cell Biology, Baylor College of Medicine, Houston, TX 77030.

出版信息

Am J Hum Genet. 1994 Jul;55(1):42-50.

Abstract

Mutations have been described in human methylmalonyl CoA mutase (MCM) that exhibit partial defects in enzyme activity, including cobalamin-dependent (i.e., mut-) or interallelic complementation. This work describes mutations in cells from four patients, three of whom exhibit a cobalamin-dependent phenotype and all four of whom exhibit interallelic complementation. Four novel mutations (R694W, G648D, G630E, and G626C) are identified that cluster near the carboxyl terminus of the protein, a region close to another mut- mutation (G717V). Each of these mutations was shown to express a phenotype congruent with that of the parental cell line, after transfection into mut0 fibroblasts, and each exhibits interallelic complementation in cotransfection assays with clones bearing a R93H mutation. The activity of mutant enzymes expressed in Saccharomyces cerevisiae parallels the residual activity of the parental cell lines and exhibits novel sensitivities to pH and salt. The clustering of these mutations identifies a region of MCM that most likely represents the cobalamin-binding domain. The location of this domain, as well as the pattern of sequence preservation between the homologous human and Probiono-bacterium shermanii enzymes, suggests a mechanism for interallelic complementation in which the cobalamin-binding defect is complemented in trans from the heterologous subunits of the dimer.

摘要

已在人类甲基丙二酰辅酶A变位酶(MCM)中发现了一些突变,这些突变在酶活性方面表现出部分缺陷,包括钴胺素依赖性(即mut-)或等位基因间互补。这项研究描述了来自四名患者细胞中的突变,其中三名患者表现出钴胺素依赖性表型,所有四名患者均表现出等位基因间互补。鉴定出四个新的突变(R694W、G648D、G630E和G626C),它们聚集在该蛋白的羧基末端附近,该区域靠近另一个mut-突变(G717V)。将这些突变中的每一个转染到mut0成纤维细胞后,均显示出与亲代细胞系一致的表型,并且在与携带R93H突变的克隆进行共转染试验时,每个突变都表现出等位基因间互补。在酿酒酵母中表达的突变酶的活性与亲代细胞系的残余活性相似,并对pH和盐表现出新的敏感性。这些突变的聚集确定了MCM的一个区域,该区域很可能代表钴胺素结合结构域。该结构域的位置以及同源的人类和谢氏丙酸杆菌酶之间的序列保守模式,提示了一种等位基因间互补的机制,即钴胺素结合缺陷通过二聚体的异源亚基反式互补。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2317/1918235/50c338a96773/ajhg00040-0052-a.jpg

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