钴胺素变异对MMACHC构象特征和寡聚化的调节:R161Q突变对cblC疾病的影响

IF 2.2 4区 生物学 Q3 BIOPHYSICS
Lisa Longo, Maria Assunta Costa, Rita Carrotta, Maria Rosalia Mangione, Vincenzo Martorana, Marco Tutone, Maria Grazia Ortore, Paula M Garcia-Franco, Sonia Vega, Adrian Velazquez-Campoy, Rosa Passantino, Silvia Vilasi
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引用次数: 0

摘要

维生素B12 (cobalamin, Cbl)是钴的一种配位化合物,位于由四个类吡咯基团组成的corrin环的中心。钴离子可以与多种上轴配体结合,这些配体在不同的钴胺素形式中各不相同,包括羟基钴胺素(OHCbl)、氰钴胺素(CNCbl)、甲基钴胺素(MeCbl)和腺苷钴胺素(AdoCbl)。MeCbl和AdoCbl被认为是具有生物活性的形式,作为甲基丙二酸(MMA)和同型半胱氨酸(HCY)代谢的辅助因子。这些代谢物的转化受损导致其病理积累,导致严重的细胞损伤。这正是cblC缺乏症所发生的情况,cblC缺乏症是一种罕见的先天疾病,由MMACHC蛋白突变引起,MMACHC蛋白在结合和加工各种钴胺素形式中起着至关重要的作用。影响MMACHC功能的突变会损害其正确处理钴胺素的能力,从而导致疾病。在这项研究中,我们评估了各种钴胺素形式,特别是AdoCbl, MeCbl和CNCbl,对野生型MMACHC蛋白的稳定性和寡聚组织的影响,使用圆二色性光谱,天然凝胶电泳和小角度x射线散射。此外,等温滴定量热实验提供了对控制MMACHC与这些钴胺结合的热力学参数的见解。此外,我们还评估了MMACHC中的R161Q突变如何改变该蛋白对不同维生素B12形式的亲和力,导致稳定性降低和同二聚化受损,这一过程可能与其功能作用相关。我们的发现为cblC的发病机制提供了分子视角,并促进了我们对MMACHC结构功能关系的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modulation of conformational features and oligomerization of MMACHC by cobalamin variants: impact of the R161Q mutation in cblC disease.

Vitamin B12 (cobalamin, Cbl) is a coordination compound of the cobalt, located at the center of a corrin ring composed of four pyrrolic-like groups. The cobalt ion can be bound to a variety of upper axial ligands, which vary among different cobalamin forms, including hydroxocobalamin (OHCbl), cyanocobalamin (CNCbl), methylcobalamin (MeCbl), and adenosylcobalamin (AdoCbl). MeCbl and AdoCbl are considered the biologically active forms, serving as cofactors in the metabolism of methylmalonic acid (MMA) and homocysteine (HCY). Impaired conversion of these metabolites leads to their pathological accumulation, resulting in severe cellular damage. This is precisely what occurs in cblC deficiency, a rare inborn disorder caused by mutations in the MMACHC protein, which plays a crucial role in binding and processing the various cobalamin forms. Mutations affecting MMACHC function impair its ability to correctly handle cobalamins, leading to the disease. In this study, we evaluated the impact of various cobalamin forms, specifically AdoCbl, MeCbl, and CNCbl, on the stability and oligomeric organization of the wild type MMACHC protein, using circular dichroism spectroscopy, native gel electrophoresis, and small-angle X-ray scattering. Moreover, isothermal titration calorimetry experiments provided insights into the thermodynamic parameters governing MMACHC binding to these cobalamins. In addition, we also assessed how the R161Q mutation in MMACHC alters the affinity of this protein for the different vitamin B12 forms, leading to decreased stability and impaired homodimerization, a process likely relevant to its functional role. Our findings provide molecular insights into cblC pathogenesis and advance our understanding of MMACHC structure-function relationships.

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来源期刊
European Biophysics Journal
European Biophysics Journal 生物-生物物理
CiteScore
4.30
自引率
0.00%
发文量
43
审稿时长
6-12 weeks
期刊介绍: The journal publishes papers in the field of biophysics, which is defined as the study of biological phenomena by using physical methods and concepts. Original papers, reviews and Biophysics letters are published. The primary goal of this journal is to advance the understanding of biological structure and function by application of the principles of physical science, and by presenting the work in a biophysical context. Papers employing a distinctively biophysical approach at all levels of biological organisation will be considered, as will both experimental and theoretical studies. The criteria for acceptance are scientific content, originality and relevance to biological systems of current interest and importance. Principal areas of interest include: - Structure and dynamics of biological macromolecules - Membrane biophysics and ion channels - Cell biophysics and organisation - Macromolecular assemblies - Biophysical methods and instrumentation - Advanced microscopics - System dynamics.
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