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Gli-Similar Proteins. Their Mechanisms of Action, Physiological Functions, and Roles in Disease

机译:Gli类似蛋白。它们的作用机制,生理功能以及在疾病中的作用

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Gli-similar (Glis) 1-3 proteins constitute a subfamily of Krüppel-like zinc-finger proteins that are closely related to members of the Gli family. Glis proteins have been implicated in several pathologies, including cystic kidney disease, diabetes, hypothyroidism, fibrosis, osteoporosis, psoriasis, and cancer. In humans, a mutation in the Glis2 gene has been linked to the development of nephronophthisis (NPHP), a recessive cystic kidney disease, while mutations in Glis3 lead to an extended multisystem phenotype that includes the development of neonatal diabetes, polycystic kidneys, congenital hypothyroidism, and facial dysmorphism. Glis3 has also been identified as a risk locus for type-1 and type-2 diabetes and additional studies have revealed a role for Glis3 in pancreatic endocrine development, β-cell maintenance, and insulin regulation. Similar to Gli1-3, Glis2 and 3 have been reported to localize to the primary cilium. These studies appear to suggest that Glis proteins are part of a primary cilium-associated signaling pathway(s). It has been hypothesized that Glis proteins are activated through posttranslational modifications and subsequently translocate to the nucleus where they regulate transcription by interacting with Glis-binding sites in the promoter regions of target genes. This chapter summarizes the current state of knowledge regarding mechanisms of action of the Glis family of proteins, their physiological functions, as well as their roles in disease.
机译:Gli-like(Glis)1-3蛋白构成了Krüppel样锌指蛋白的一个亚家族,与Gli家族的成员密切相关。 Glis蛋白已经涉及多种病理,包括囊性肾脏疾病,糖尿病,甲状腺功能减退,纤维化,骨质疏松,牛皮癣和癌症。在人类中,Glis2基因的突变与隐性囊性肾脏疾病肾病(NPHP)的发展有关,而Glis3的突变导致扩展的多系统表型,包括新生儿糖尿病,多囊肾,先天性甲状腺功能减退症的发展。和面部变形。 Glis3还被确定为1型和2型糖尿病的危险源,另外的研究表明Glis3在胰腺内分泌发育,β细胞维持和胰岛素调节中的作用。类似于Gli1-3,据报道Glis2和3定位于初级纤毛。这些研究似乎表明,Glis蛋白是主要的纤毛相关信号传导途径的一部分。据推测,Glis蛋白通过翻译后修饰被激活,随后被转运到细胞核,在这里它们通过与靶基因启动子区域的Glis结合位点相互作用来调节转录。本章总结了有关Glis蛋白家族的作用机理,其生理功能以及它们在疾病中的作用的最新知识。

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