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首页> 外文期刊>Molecular genetics and metabolism >Impact of cblB mutations on the function of ATP:cob(I)alamin adenosyltransferase in disorders of vitamin B12 metabolism.
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Impact of cblB mutations on the function of ATP:cob(I)alamin adenosyltransferase in disorders of vitamin B12 metabolism.

机译:cblB突变对维生素B12代谢异常中ATP:cob(I)阿拉明腺苷转移酶功能的影响。

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ATP:cob(I)alamin adenosyltransferase (MMAB protein; methylmalonic aciduria type B) is an enzyme of vitamin B(12) metabolism that converts reduced cob(I)alamin to the adenosylcobalamin co-factor required for the functional activity of methylmalonyl-CoA mutase. Mutations in the human MMAB gene result in a block in adenosylcobalamin synthesis and are responsible for the cblB complementation group of inherited vitamin B(12) disorders. In this study, we examined the impact of several mutations, previously identified in cblB patients and clustered within a small, highly conserved region in MMAB. We confirmed mitochondrial expression of MMAB in human cells and showed that two mutations, R186W and E193K, were associated with absent protein by Western blot, while one, R191W, coupled with another point mutation, produced a protein in patient fibroblasts. Wild type MMAB and all four mutant proteins were stably expressed at high level as GST-fusion proteins, but only the R191W protein was enzymatically active. It showed an elevated K(m) of 320 microM (vs 6.8 microM for wild type enzyme) for ATP and 60 microM (vs 3.7 microM) for cob(I)alamin, with a reduction in k(cat) for both substrates. Circular dichroism spectroscopy revealed that three mutant proteins examined retained a alpha-helical structure as for the wild type protein. Characterization of MMAB will contribute to our understanding of cobalamin processing in mammalian cells and of disease mechanisms in the genetic disorders.
机译:ATP:钴(I)阿拉明腺苷转移酶(MMAB蛋白;甲基丙二酸尿症B型)是一种维生素B(12)代谢酶,可将还原的Cob(I)阿拉明转化为甲基丙二酰辅酶A功能所需的腺苷钴胺素辅因子变异酶。人类MMAB基因的突变导致腺苷钴胺素合成受阻,并与遗传性维生素B(12)疾病的cblB互补基团有关。在这项研究中,我们检查了先前在cblB患者中鉴定出并聚集在MMAB的一个小的高度保守区域内的几种突变的影响。我们证实了MMAB在人类细胞中的线粒体表达,并通过Western blot检测到两个突变R186W和E193K与蛋白缺失有关,而一个突变R191W与另一个点突变在患者成纤维细胞中产生了一种蛋白。野生型MMAB和所有四个突变蛋白均作为GST融合蛋白高水平稳定表达,但只有R191W蛋白具有酶促活性。它显示出ATP的K(m)升高至320 microM(野生型酶为6.8 microM),cob(I)alamin的K(m)提高至60 microM(vs 3.7 microM),两种底物的k(cat)均降低。圆二色性光谱显示,所检测的三个突变蛋白与野生型蛋白一样保留了α-螺旋结构。 MMAB的表征将有助于我们了解哺乳动物细胞中钴胺素的加工过程以及遗传疾病中的疾病机制。

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