Golgi pH elevation due to loss of V-ATPase subunit V0a2 function correlates with tissue-specific glycosylation changes and globozoospermia.

IF 6.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cellular and Molecular Life Sciences Pub Date : 2024-12-16 DOI:10.1007/s00018-024-05506-7
Johannes Kopp, Denise Jahn, Guido Vogt, Anthi Psoma, Edoardo Ratto, Willy Morelle, Nina Stelzer, Ingrid Hausser, Anne Hoffmann, Miguel Rodriguez de Los Santos, Leonard A Koch, Björn Fischer-Zirnsak, Christian Thiel, Wilhelm Palm, David Meierhofer, Geert van den Bogaart, François Foulquier, Andreas Meinhardt, Uwe Kornak
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Abstract

Loss-of-function variants in ATP6V0A2, encoding the trans Golgi V-ATPase subunit V0a2, cause wrinkly skin syndrome (WSS), a connective tissue disorder with glycosylation defects and aberrant cortical neuron migration. We used knock-out (Atp6v0a2-/-) and knock-in (Atp6v0a2RQ/RQ) mice harboring the R755Q missense mutation selectively abolishing V0a2-mediated proton transport to investigate the WSS pathomechanism. Homozygous mutants from both strains displayed a reduction of growth, dermis thickness, and elastic fiber formation compatible with WSS. A hitherto unrecognized male infertility due to globozoospermia was evident in both mouse lines with impaired Golgi-derived acrosome formation and abolished mucin-type O-glycosylation in spermatids. Atp6v0a2-/- mutants showed enhanced fucosylation and glycosaminoglycan modification, but reduced levels of glycanated decorin and sialylation in skin and/or fibroblasts, which were absent or milder in Atp6v0a2RQ/RQ. Atp6v0a2RQ/RQ mutants displayed more abnormal migration of cortical neurons, correlating with seizures and a reduced O-mannosylation of α-dystroglycan. While anterograde transport within the secretory pathway was similarly delayed in both mutants the brefeldin A-induced retrograde fusion of Golgi membranes with the endoplasmic reticulum was less impaired in Atp6v0a2RQ/RQ. Measurement of the pH in the trans Golgi compartment revealed a shift from 5.80 in wildtype to 6.52 in Atp6v0a2-/- and 6.25 in Atp6v0a2RQ/RQ. Our findings suggest that altered O-glycosylation is more relevant for the WSS pathomechanism than N-glycosylation and leads to a secondary dystroglycanopathy. Most phenotypic and cellular properties correlate with the different degrees of trans Golgi pH elevation in both mutants underlining the fundamental relevance of pH regulation in the secretory pathway.

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v - atp酶亚基V0a2功能丧失引起的高尔基体pH升高与组织特异性糖基化改变和球精症相关。
编码反式高尔基v - atp酶亚基V0a2的ATP6V0A2功能缺失变异可导致皮肤起皱综合征(WSS),这是一种伴有糖基化缺陷和皮质神经元异常迁移的结缔组织疾病。我们使用携带R755Q错配突变的敲除(Atp6v0a2-/-)和敲入(Atp6v0a2RQ/RQ)小鼠选择性地消除v0a2介导的质子转运来研究WSS的病理机制。这两种菌株的纯合突变体表现出生长、真皮厚度和弹性纤维形成的减少,与WSS相适应。在两种小鼠系中,由于高尔基衍生顶体形成受损和精子中黏液型o -糖基化消失,迄今未被认识到的球形精子症导致的雄性不育很明显。Atp6v0a2-/-突变体表现出增强的聚焦化和糖胺聚糖修饰,但在皮肤和/或成纤维细胞中糖基化的decorin和唾液化水平降低,而在Atp6v0a2RQ/RQ中不存在或较轻。Atp6v0a2RQ/RQ突变体表现出更多的皮质神经元异常迁移,与癫痫发作和α-糖醛基化减少有关。虽然在两种突变体中,分泌途径内的顺行转运同样延迟,但在Atp6v0a2RQ/RQ中,brefeldin a诱导的高尔基体膜与内质网的逆行融合受到的损害较小。反式高尔基室的pH值测量显示,从野生型的5.80到Atp6v0a2-/-的6.52和Atp6v0a2RQ/RQ的6.25。我们的研究结果表明,与n -糖基化相比,改变的o -糖基化与WSS的病理机制更相关,并导致继发性糖营养不良。在这两个突变体中,大多数表型和细胞特性与不同程度的反式高尔基体pH升高相关,强调了pH调节在分泌途径中的基本相关性。
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来源期刊
Cellular and Molecular Life Sciences
Cellular and Molecular Life Sciences 生物-生化与分子生物学
CiteScore
13.20
自引率
1.20%
发文量
546
审稿时长
1.0 months
期刊介绍: Journal Name: Cellular and Molecular Life Sciences (CMLS) Location: Basel, Switzerland Focus: Multidisciplinary journal Publishes research articles, reviews, multi-author reviews, and visions & reflections articles Coverage: Latest aspects of biological and biomedical research Areas include: Biochemistry and molecular biology Cell biology Molecular and cellular aspects of biomedicine Neuroscience Pharmacology Immunology Additional Features: Welcomes comments on any article published in CMLS Accepts suggestions for topics to be covered
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