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肌苷二磷酸脂缺乏导致巴特综合征中线粒体镁通道 MRS2 的不稳定性。

Cardiolipin deficiency leads to the destabilization of mitochondrial magnesium channel MRS2 in Barth syndrome.

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, 301 Old Main Drive, TAMU 3474, College Station, TX 77843, United States.

出版信息

Hum Mol Genet. 2023 Dec 1;32(24):3353-3360. doi: 10.1093/hmg/ddad153.

DOI:10.1093/hmg/ddad153
PMID:37721533
Abstract

Barth syndrome (BTHS) is a debilitating X-linked cardio-skeletal myopathy caused by loss-of-function mutations in TAFAZZIN, a cardiolipin (CL)-remodeling enzyme required for the maintenance of normal levels of CL species in mitochondrial membranes. At present, how perturbations in CL abundance and composition lead to many debilitating clinical presentations in BTHS patients have not been fully elucidated. Inspired by our recent findings that CL is essential for optimal mitochondrial calcium uptake, we measured the levels of other biologically important metal ions in BTHS mitochondria and found that in addition to calcium, magnesium levels are significantly reduced. Consistent with this observation, we report a decreased abundance of the mitochondrial magnesium influx channel MRS2 in multiple models of BTHS including yeast, murine myoblast, and BTHS patient cells and cardiac tissue. Mechanistically, we attribute reduced steady-state levels of MRS2 to its increased turnover in CL-deficient BTHS models. By expressing Mrs2 in well-characterized yeast mutants of the phospholipid biosynthetic pathways, we demonstrate a specific requirement of CL for Mrs2 abundance and assembly. Finally, we provide in vitro evidence for the direct binding of CL with human MRS2. Together, our study has identified a critical requirement of CL for MRS2 stability and suggests perturbation of mitochondrial magnesium homeostasis as a novel contributing factor to BTHS pathology.

摘要

巴特综合征(BTHS)是一种进行性的 X 连锁心肌骨骼肌病,由 TAFAZZIN 的功能丧失突变引起,TAFAZZIN 是一种心磷脂(CL)重塑酶,对于维持线粒体膜中 CL 物种的正常水平是必需的。目前,CL 丰度和组成的改变如何导致 BTHS 患者出现许多衰弱的临床表现尚未完全阐明。受我们最近发现 CL 对最佳线粒体钙摄取至关重要的启发,我们测量了 BTHS 线粒体中其他生物重要金属离子的水平,发现除了钙之外,镁水平也显著降低。与这一观察结果一致,我们报告了多种 BTHS 模型中,包括酵母、鼠成肌细胞和 BTHS 患者细胞和心脏组织中线粒体镁内流通道 MRS2 的丰度减少。从机制上讲,我们将 MRS2 的稳态水平降低归因于其在 CL 缺乏的 BTHS 模型中周转增加。通过在磷脂生物合成途径的特征明确的酵母突变体中表达 Mrs2,我们证明了 CL 对 Mrs2 丰度和组装的特定要求。最后,我们提供了体外证据表明 CL 与人 MRS2 的直接结合。总之,我们的研究确定了 CL 对 MRS2 稳定性的关键要求,并表明线粒体镁动态平衡的改变可能是 BTHS 发病机制的一个新的致病因素。

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