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SHIP2:2型糖尿病治疗的一个新兴靶点。

SHIP2: an emerging target for the treatment of type 2 diabetes mellitus.

作者信息

Baumgartener James W

机构信息

8491 N.E. Paulanna Lane, Bainbridge Island, WA 98110, USA.

出版信息

Curr Drug Targets Immune Endocr Metabol Disord. 2003 Dec;3(4):291-8. doi: 10.2174/1568008033340144.

Abstract

With the rapid increase in the number of patients developing type 2 diabetes mellitus and the lack of optimal therapies, much focus has been placed on the insulin-signaling pathway in the discovery of novel drug targets. Phosphatidyl Inositol 3-Kinase (PI3K) is central to mediating insulin-s metabolic effects. PI3K catalyzes the generation of phosphatidyl inositol (3,4,5) triphosphate (PIP(3)). Inhibition of PI3K activity results in a blockade of insulin signaling including glucose uptake and glyocogen synthesis. Thus, PIP(3) is a critical mediator of insulin action. A family of phosphatidyl inositol phosphatases have been identified that counter-regulate PI3K activity by hydrolyzing PIP(3) to phosphatidyl inositol bisphosphate at either the 3' or 5' position of the inositol ring. Mice lacking one of these enzymes, Src-Homology Inositol Phosphatase-2 (SHIP2), demonstrate increased insulin sensitivity, suggesting that pharmacological inhibition of SHIP2 could alleviate insulin resistance. Recent studies demonstrate elevated SHIP2 expression is associated with insulin resistance in human patients. Comparing the studies on SHIP2 and other phosphatases suggests how inhibition of SHIP2 leads to increased insulin sensitivity without deleterious effects. This review focuses on the emergence of SHIP2 as a target in the insulin-signaling pathway for the treatment of type 2 diabetes.

摘要

随着2型糖尿病患者数量的迅速增加以及缺乏最佳治疗方法,在发现新型药物靶点方面,人们将大量注意力集中在了胰岛素信号通路。磷脂酰肌醇3激酶(PI3K)在介导胰岛素的代谢作用中起核心作用。PI3K催化生成磷脂酰肌醇(3,4,5)三磷酸(PIP(3))。抑制PI3K活性会导致胰岛素信号传导受阻,包括葡萄糖摄取和糖原合成。因此,PIP(3)是胰岛素作用的关键介质。已鉴定出一类磷脂酰肌醇磷酸酶,它们通过在肌醇环的3'或5'位置将PIP(3)水解为磷脂酰肌醇二磷酸来对抗调节PI3K活性。缺乏这些酶之一即Src同源肌醇磷酸酶-2(SHIP2)的小鼠表现出胰岛素敏感性增加,这表明对SHIP2的药理抑制可减轻胰岛素抵抗。最近的研究表明,SHIP2表达升高与人类患者的胰岛素抵抗有关。比较关于SHIP2和其他磷酸酶的研究表明了抑制SHIP2如何导致胰岛素敏感性增加而无有害影响。本综述重点关注SHIP2作为胰岛素信号通路中治疗2型糖尿病靶点的出现。

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