Mitochondrial disease and endocrine dysfunction

粒线体疾病 线粒体 内分泌系统 线粒体DNA 内分泌疾病 背景(考古学) 生物 医学 疾病 激素 生物信息学 内分泌学 遗传学 内科学 基因 古生物学
作者
Jasmine Chow,Joyeeta Rahman,John C. Achermann,Mehul Dattani,Shamima Rahman
出处
期刊:Nature Reviews Endocrinology [Nature Portfolio]
卷期号:13 (2): 92-104 被引量:204
标识
DOI:10.1038/nrendo.2016.151
摘要

Here, Chow and colleagues discuss the endocrine manifestations of mitochondrial diseases, a group of multisystem disorders characterized by great clinical, biochemical and genetic heterogeneity. The authors describe the clinical features, genetic causes and pathological mechanisms underlying these diseases, the understanding of which will be key to developing innovative therapies for these patients. Mitochondria are critical organelles for endocrine health; steroid hormone biosynthesis occurs in these organelles and they provide energy in the form of ATP for hormone production and trafficking. Mitochondrial diseases are multisystem disorders that feature defective oxidative phosphorylation, and are characterized by enormous clinical, biochemical and genetic heterogeneity. To date, mitochondrial diseases have been found to result from >250 monogenic defects encoded across two genomes: the nuclear genome and the ancient circular mitochondrial genome located within mitochondria themselves. Endocrine dysfunction is often observed in genetic mitochondrial diseases and reflects decreased intracellular production or extracellular secretion of hormones. Diabetes mellitus is the most frequently described endocrine disturbance in patients with inherited mitochondrial diseases, but other endocrine manifestations in these patients can include growth hormone deficiency, hypogonadism, adrenal dysfunction, hypoparathyroidism and thyroid disease. Although mitochondrial endocrine dysfunction frequently occurs in the context of multisystem disease, some mitochondrial disorders are characterized by isolated endocrine involvement. Furthermore, additional monogenic mitochondrial endocrine diseases are anticipated to be revealed by the application of genome-wide next-generation sequencing approaches in the future. Understanding the mitochondrial basis of endocrine disturbance is key to developing innovative therapies for patients with mitochondrial diseases.
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