Methylmalonic acidemia triggers lysosomal-autophagy dysfunctions.

IF 6.1 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cell and Bioscience Pub Date : 2024-05-17 DOI:10.1186/s13578-024-01245-1
Michele Costanzo, Armando Cevenini, Laxmikanth Kollipara, Marianna Caterino, Sabrina Bianco, Francesca Pirozzi, Gianluca Scerra, Massimo D'Agostino, Luigi Michele Pavone, Albert Sickmann, Margherita Ruoppolo
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Abstract

Background: Methylmalonic acidemia (MMA) is a rare inborn error of propionate metabolism caused by deficiency of the mitochondrial methylmalonyl-CoA mutase (MUT) enzyme. As matter of fact, MMA patients manifest impairment of the primary metabolic network with profound damages that involve several cell components, many of which have not been discovered yet. We employed cellular models and patients-derived fibroblasts to refine and uncover new pathologic mechanisms connected with MUT deficiency through the combination of multi-proteomics and bioinformatics approaches.

Results: Our data show that MUT deficiency is connected with profound proteome dysregulations, revealing molecular actors involved in lysosome and autophagy functioning. To elucidate the effects of defective MUT on lysosomal and autophagy regulation, we analyzed the morphology and functionality of MMA-lysosomes that showed deep alterations, thus corroborating omics data. Lysosomes of MMA cells present as enlarged vacuoles with low degradative capabilities. Notwithstanding, treatment with an anti-propionigenic drug is capable of totally rescuing lysosomal morphology and functional activity in MUT-deficient cells. These results indicate a strict connection between MUT deficiency and lysosomal-autophagy dysfunction, providing promising therapeutic perspectives for MMA.

Conclusions: Defective homeostatic mechanisms in the regulation of autophagy and lysosome functions have been demonstrated in MUT-deficient cells. Our data prove that MMA triggers such dysfunctions impacting on autophagosome-lysosome fusion and lysosomal activity.

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甲基丙二酸血症引发溶酶体-自噬功能障碍
背景:甲基丙二酸血症(MMA)是一种罕见的先天性丙酸代谢错误,由线粒体甲基丙二酰-CoA 突变酶(MUT)缺乏引起。事实上,MMA 患者的主要代谢网络受损,涉及多个细胞成分,其中许多成分尚未被发现。我们利用细胞模型和源自患者的成纤维细胞,通过结合多种蛋白质组学和生物信息学方法,完善并发现了与 MUT 缺乏有关的新病理机制:结果:我们的数据显示,MUT缺乏症与严重的蛋白质组失调有关,揭示了参与溶酶体和自噬功能的分子角色。为了阐明MUT缺陷对溶酶体和自噬调控的影响,我们分析了MMA溶酶体的形态和功能,这些溶酶体出现了深度改变,从而证实了omics数据。MMA 细胞的溶酶体表现为增大的空泡,降解能力较低。尽管如此,使用抗丙种原药物治疗能够完全恢复 MUT 缺陷细胞溶酶体的形态和功能活性。这些结果表明,MUT 缺乏与溶酶体-自噬功能障碍之间存在密切联系,为 MMA 的治疗提供了广阔的前景:结论:自噬和溶酶体功能调节的平衡机制缺陷已在 MUT 缺乏的细胞中得到证实。我们的数据证明,MMA 会引发此类功能障碍,影响自噬体-溶酶体融合和溶酶体活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cell and Bioscience
Cell and Bioscience BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
10.70
自引率
0.00%
发文量
187
审稿时长
>12 weeks
期刊介绍: Cell and Bioscience, the official journal of the Society of Chinese Bioscientists in America, is an open access, peer-reviewed journal that encompasses all areas of life science research.
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