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Characterization of hereditary inclusion body myopathy myoblasts: possible primary impairment of apoptotic events.

机译:遗传性包涵体肌病成肌细胞的表征:凋亡事件的可能原发性损伤。

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摘要

Hereditary inclusion body myopathy (HIBM) is a unique muscular disorder caused by mutations in the UDP-N-acetylglucosamine 2-epimerase/N-acetylmannosamine kinase (GNE) gene. GNE encodes a bi-functional enzyme acting in the biosynthetic pathway of sialic acid. Since the underlying myopathological mechanism leading to the disease phenotype is poorly understood, we have established human myoblasts cultures, derived from HIBM satellite cells carrying the homozygous M712T mutation, and identified cellular and molecular characteristics of these cells. HIBM and control myoblasts showed similar heterogeneous patterns of proliferation and differentiation. Upon apoptosis induction, phosphatidylserine externalization was similar in HIBM and controls. In contrast, the active forms of caspase-3 and -9 were strongly enhanced in most HIBM cultures compared to controls, while pAkt, downregulated in controls, remained high in HIBM cells. These results could indicate impaired apoptotic signaling in HIBM cells. Since satellite cells enable partial regeneration of the post-mitotic muscle tissue, these altered processes could contribute to the muscle mass loss seen in patients. The identification of survival defects in HIBM affected muscle cells could disclose new functions for GNE in muscle cells.
机译:遗传性包涵体肌病(HIBM)是由UDP-N-乙酰氨基葡萄糖2-表异构酶/ N-乙酰甘露糖胺激酶(GNE)基因突变引起的独特的肌肉疾病。 GNE编码一种在唾液酸的生物合成途径中起作用的双功能酶。由于对导致疾病表型的潜在肌病理学机制了解甚少,因此我们建立了人类成肌细胞培养物,其衍生自携带纯合M712T突变的HIBM卫星细胞,并鉴定了这些细胞的细胞和分子特征。 HIBM和对照成肌细胞显示出相似的异质性增殖和分化模式。凋亡诱导后,磷脂酰丝氨酸的外在化在HIBM和对照组中相似。相反,与对照相比,大多数HIBM培养物中caspase-3和-9的活性形式得到了显着增强,而在对照中被下调的pAkt在HIBM细胞中仍然很高。这些结果可能表明HIBM细胞中凋亡信号转导受损。由于卫星细胞能够使有丝分裂后的肌肉组织部分再生,因此这些改变的过程可能导致患者出现肌肉质量下降。 HIBM感染的肌肉细胞中生存缺陷的鉴定可以揭示肌肉细胞中GNE的新功能。

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