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Disorders of Calcium Metabolism

机译:钙代谢紊乱

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The genetic contribution to calcium metabolism is well recognized. Many of the proteins that contribute to calcium homeostasis through intestinal absorption, bone deposition and resorption, renal reabsorption and the molecules regulating these processes have been identified. Mutations in many of the genes coding for these proteins have been identified and often have clear clinical phenotypes. These mutations are generally rare with large effect sizes and a high degree of penetrance. As monogenetic diseases, they have a mendelian inheritance pattern and have been identified with traditional family-based linkage studies. A great deal of progress has been made in the understanding of the physiology of calcium metabolism; however, it remains an evolving field. The identification of the monogenetic etiology of disease has contributed greatly to our understanding of calcium handling and homeostasis. Transgenic animal models of these diseases continue to offer new insights into the mechanisms of calcium metabolism and its regulation. The purpose of this review is to briefly outline calcium metabolism focusing on the mechanisms of intestinal absorption and renal reabsorption as a framework to review the monogenic causes of dysregulated calcium metabolism.
机译:钙代谢的遗传贡献是公认的。已经鉴定出许多通过肠道吸收,骨骼沉积和吸收,肾脏重吸收和调节这些过程的分子而有助于钙稳态的蛋白质。已经鉴定出许多编码这些蛋白质的基因中的突变,并且通常具有清晰的临床表型。这些突变通常很少见,具有较大的效应大小和很高的渗透率。作为单基因疾病,它们具有孟德尔遗传模式,并已通过传统的基于家庭的连锁研究确定。在钙代谢生理学的理解上已经取得了很大进展。但是,它仍然是一个不断发展的领域。疾病的单基因病因学鉴定为我们对钙处理和体内平衡的理解做出了巨大贡献。这些疾病的转基因动物模型继续为钙代谢及其调控机制提供新的见解。这篇综述的目的是简要概述钙代谢,重点是肠道吸收和肾脏重吸收的机制,以此作为审查钙代谢失调的单基因原因的框架。

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