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三羧酸循环酶突变与嗜铬细胞瘤和副神经节瘤中伪缺氧信号之间的联系。

The connection between tricarboxylic acid cycle enzyme mutations and pseudohypoxic signaling in pheochromocytoma and paraganglioma.

机构信息

Department of Urology, The First Hospital of Jilin University, Changchun, Jilin, China.

Key Laboratory of Pathobiology, Ministry of Education, Jilin University, Changchun, Jilin, China.

出版信息

Front Endocrinol (Lausanne). 2023 Oct 5;14:1274239. doi: 10.3389/fendo.2023.1274239. eCollection 2023.

Abstract

Pheochromocytomas and paragangliomas (PPGLs) are rare neuroendocrine tumors originating from chromaffin cells, holding significant clinical importance due to their capacity for excessive catecholamine secretion and associated cardiovascular complications. Roughly 80% of cases are associated with genetic mutations. Based on the functionality of these mutated genes, PPGLs can be categorized into distinct molecular clusters: the pseudohypoxia signaling cluster (Cluster-1), the kinase signaling cluster (Cluster-2), and the WNT signaling cluster (Cluster-3). A pivotal factor in the pathogenesis of PPGLs is hypoxia-inducible factor-2α (HIF2α), which becomes upregulated even under normoxic conditions, activating downstream transcriptional processes associated with pseudohypoxia. This adaptation provides tumor cells with a growth advantage and enhances their ability to thrive in adverse microenvironments. Moreover, pseudohypoxia disrupts immune cell communication, leading to the development of an immunosuppressive tumor microenvironment. Within Cluster-1a, metabolic perturbations are particularly pronounced. Mutations in enzymes associated with the tricarboxylic acid (TCA) cycle, such as succinate dehydrogenase (SDHx), fumarate hydratase (FH), isocitrate dehydrogenase (IDH), and malate dehydrogenase type 2 (MDH2), result in the accumulation of critical oncogenic metabolic intermediates. Notable among these intermediates are succinate, fumarate, and 2-hydroxyglutarate (2-HG), which promote activation of the HIFs signaling pathway through various mechanisms, thus inducing pseudohypoxia and facilitating tumorigenesis. SDHx mutations are prevalent in PPGLs, disrupting mitochondrial function and causing succinate accumulation, which competitively inhibits α-ketoglutarate-dependent dioxygenases. Consequently, this leads to global hypermethylation, epigenetic changes, and activation of HIFs. In FH-deficient cells, fumarate accumulation leads to protein succination, impacting cell function. FH mutations also trigger metabolic reprogramming towards glycolysis and lactate synthesis. IDH1/2 mutations generate D-2HG, inhibiting α-ketoglutarate-dependent dioxygenases and stabilizing HIFs. Similarly, MDH2 mutations are associated with HIF stability and pseudohypoxic response. Understanding the intricate relationship between metabolic enzyme mutations in the TCA cycle and pseudohypoxic signaling is crucial for unraveling the pathogenesis of PPGLs and developing targeted therapies. This knowledge enhances our comprehension of the pivotal role of cellular metabolism in PPGLs and holds implications for potential therapeutic advancements.

摘要

嗜铬细胞瘤和副神经节瘤(PPGLs)是源自嗜铬细胞的罕见神经内分泌肿瘤,由于其过度分泌儿茶酚胺和相关心血管并发症的能力而具有重要的临床意义。大约 80%的病例与基因突变有关。根据这些突变基因的功能,PPGLs 可分为不同的分子簇:拟缺氧信号簇(Cluster-1)、激酶信号簇(Cluster-2)和 WNT 信号簇(Cluster-3)。PPGLs 发病机制中的一个关键因素是缺氧诱导因子-2α(HIF2α),即使在正常氧条件下,它也会被上调,激活与拟缺氧相关的下游转录过程。这种适应为肿瘤细胞提供了生长优势,并增强了它们在不利微环境中生存的能力。此外,拟缺氧会破坏免疫细胞通讯,导致免疫抑制性肿瘤微环境的发展。在 Cluster-1a 中,代谢紊乱尤为明显。与三羧酸(TCA)循环相关的酶,如琥珀酸脱氢酶(SDHx)、延胡索酸水合酶(FH)、异柠檬酸脱氢酶(IDH)和苹果酸脱氢酶 2 型(MDH2)的突变导致关键致癌代谢中间产物的积累。这些中间产物中值得注意的是琥珀酸、延胡索酸和 2-羟基戊二酸(2-HG),它们通过各种机制促进 HIF 信号通路的激活,从而诱导拟缺氧并促进肿瘤发生。SDHx 突变在 PPGLs 中很常见,破坏线粒体功能并导致琥珀酸积累,从而竞争性抑制α-酮戊二酸依赖性加双氧酶。因此,这导致全局超甲基化、表观遗传改变和 HIF 的激活。在 FH 缺陷细胞中,富马酸积累导致蛋白质琥珀酰化,影响细胞功能。FH 突变还触发代谢向糖酵解和乳酸合成的重编程。IDH1/2 突变产生 D-2HG,抑制α-酮戊二酸依赖性加双氧酶并稳定 HIF。同样,MDH2 突变与 HIF 稳定性和拟缺氧反应有关。了解 TCA 循环中代谢酶突变与拟缺氧信号之间的复杂关系对于揭示 PPGLs 的发病机制和开发靶向治疗至关重要。这一知识增强了我们对细胞代谢在 PPGLs 中的关键作用的理解,并为潜在的治疗进展提供了启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf8/10585109/46d8fede9f4c/fendo-14-1274239-g001.jpg

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