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CART是一种新型的胰岛调节肽。

CART is a novel islet regulatory peptide.

作者信息

Wierup Nils, Sundler Frank

机构信息

Department of Experimental Medical Science, Division of Diabetes, Metabolism, and Endocrinology, Lund University, Lund, Sweden.

出版信息

Peptides. 2006 Aug;27(8):2031-6. doi: 10.1016/j.peptides.2006.02.011. Epub 2006 Jul 13.

Abstract

CART peptides have emerged as important islet regulators. CART is expressed both in islet endocrine cells and in parasympathetic and sensory nerves innervating the islets. In adult rats the intra-islet expression of CART is limited to the somatostatin producing delta-cells, while in adult mice CART is mainly expressed in nerve fibers. During development islet CART is upregulated; in rats in almost all types of islet endocrine cells, including the insulin-producing beta-cells, and in mice mainly in the alpha-cells. This pattern of expression peaks around birth. CART is also expressed in human pancreatic nerves and in islet tumours where the expression level of CART may be related to the degree of differentiation of the tumour. Interestingly, in several rat models of type 2 diabetes CART expression is robustly upregulated in the beta-cells, and is prominent during the phase of beta cell proliferation and hypertrophy. While CART inhibits glucose stimulated insulin secretion from rat islets it augments insulin secretion amplified by cAMP. Mice lacking CART, on the other hand, have islet dysfunction, and humans with a missense mutation in the cart gene are prone to develop type 2 diabetes. These data favor a role of CART in normal islet function and in the pathophysiology of type 2 diabetes.

摘要

可卡因-安非他明调节转录肽(CART)已成为重要的胰岛调节因子。CART在胰岛内分泌细胞以及支配胰岛的副交感神经和感觉神经中均有表达。在成年大鼠中,胰岛内CART的表达仅限于产生生长抑素的δ细胞,而在成年小鼠中,CART主要表达于神经纤维。在发育过程中,胰岛CART表达上调;在大鼠中,几乎在所有类型的胰岛内分泌细胞中,包括产生胰岛素的β细胞,而在小鼠中主要在α细胞中。这种表达模式在出生前后达到峰值。CART也在人胰腺神经和胰岛肿瘤中表达,其中CART的表达水平可能与肿瘤的分化程度有关。有趣的是,在几种2型糖尿病大鼠模型中,β细胞中CART表达强烈上调,并且在β细胞增殖和肥大阶段很突出。虽然CART抑制大鼠胰岛的葡萄糖刺激的胰岛素分泌,但它增强了由环磷酸腺苷(cAMP)放大的胰岛素分泌。另一方面,缺乏CART的小鼠存在胰岛功能障碍,并且在cart基因中有错义突变的人易患2型糖尿病。这些数据支持CART在正常胰岛功能和2型糖尿病病理生理学中的作用。

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