Department of Biological Anthropology, Eötvös Lorand University, Budapest H-1117, Hungary.
1st Department of Pathology and Experimental Cancer Research, Semmelweis University, Budapest H-1085, Hungary.
Dis Model Mech. 2020 Oct 15;13(10):dmm044925. doi: 10.1242/dmm.044925.
The conserved B-subunit of succinate dehydrogenase (SDH) participates in the tricarboxylic acid cycle (TCA) cycle and mitochondrial electron transport. The Arg230His mutation in SDHB causes heritable pheochromocytoma/paraganglioma (PPGL). In , we generated an PPGL model (SDHB-1 Arg244His; equivalent to human Arg230His), which manifests delayed development, shortened lifespan, attenuated ATP production and reduced mitochondrial number. Although succinate is elevated in both missense and null mutants, transcriptomic comparison suggests very different causal mechanisms that are supported by metabolic analysis, whereby only Arg244His (not null) worms demonstrate elevated lactate/pyruvate levels, pointing to a missense-induced, Warburg-like aberrant glycolysis. predictions of the SDHA-B dimer structure demonstrate that Arg230His modifies the catalytic cleft despite the latter's remoteness from the mutation site. We hypothesize that the Arg230His SDHB mutation rewires metabolism, reminiscent of metabolic reprogramming in cancer. Our tractable model provides a novel tool to investigate the metastatic propensity of this familial cancer and our approach could illuminate wider SDH pathology.This article has an associated First Person interview with the first author of the paper.
琥珀酸脱氢酶(SDH)的保守 B 亚基参与三羧酸循环(TCA)循环和线粒体电子传递。SDHB 中的 Arg230His 突变导致遗传性嗜铬细胞瘤/副神经节瘤(PPGL)。在 ,我们构建了一个 PPGL 模型(SDHB-1 Arg244His;相当于人类 Arg230His),其表现为发育迟缓、寿命缩短、ATP 产生减少和线粒体数量减少。尽管错义突变和缺失突变体中的琥珀酸都升高,但转录组比较表明存在非常不同的因果机制,这得到代谢分析的支持,其中只有 Arg244His(而非缺失)突变体表现出升高的乳酸/丙酮酸水平,指向错义诱导的、类似沃伯格的异常糖酵解。对 SDHA-B 二聚体结构的预测表明,Arg230His 修饰了催化裂隙,尽管后者远离突变位点。我们假设 Arg230His SDHB 突变重新布线代谢,类似于癌症中的代谢重编程。我们的可处理模型为研究这种家族性癌症的转移倾向提供了一种新工具,我们的方法可以阐明更广泛的 SDH 病理学。本文有一篇与论文第一作者的相关第一人称采访。