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二肽基肽酶 4(DPP4)在血脂异常发展中的作用:DPP4 参与类固醇代谢途径。

Role of dipeptidyl peptidase IV (DPP4) in the development of dyslipidemia: DPP4 contributes to the steroid metabolism pathway.

机构信息

Department of Pharmaceutical Information Science, Institute of Health Biosciences, The University of Tokushima Graduate School, Japan.

出版信息

Life Sci. 2011 Jan 3;88(1-2):43-9. doi: 10.1016/j.lfs.2010.10.019. Epub 2010 Nov 1.

Abstract

AIMS

We previously reported that dipeptidyl peptidase IV (DPP4)-deficient rats were susceptible to dyslipidemia induced by streptozotocin (STZ). Hence, it is suggested that DPP4 is important for lipid metabolism.

MAIN METHODS

In this study, to verify the role of DPP4 in the development of dyslipidemia, we carried out a microarray analysis of the livers of STZ-treated wild-type and DPP4-deficient rats and showed that the expression levels of genes involved in metabolic processes (steroid metabolic processes and cellular lipid metabolic processes) were significantly altered by STZ treatment.

KEY FINDINGS

In the wild-type rats, the expression of hydroxysteroid (17-beta) dehydrogenase 2 (Hsd7b2), which catalyzes sex steroid synthesis from cholesterol, was significantly increased by about 15-fold after STZ treatment; however, it did not change in the DPP4-deficient rats. In the STZ untreated group of DPP4-deficient rats, the expression levels of cytochrome P450, subfamily 51 (Cyp51) and sterol-C4-methyl oxidase-like (Sc4mol), which catalyze intermediate steps in cholesterol synthesis, were significantly elevated compared to those of other groups. Similar results were demonstrated in HuH7-cells after DPP4 overexpression or the addition of human sera containing DPP4.

SIGNIFICANCE

DPP4 is crucial for regulating the expression of factors related to steroid metabolism such as Cyp51, Sc4mol, and Hsd17b2, and DPP4 deficiency or inhibition may cause dyslipidemia.

摘要

目的

我们之前报道过二肽基肽酶 4(DPP4)缺陷型大鼠易发生链脲佐菌素(STZ)诱导的血脂异常。因此,DPP4 对脂质代谢很重要。

主要方法

在这项研究中,为了验证 DPP4 在血脂异常发展中的作用,我们对 STZ 处理的野生型和 DPP4 缺陷型大鼠的肝脏进行了基因芯片分析,结果表明,参与代谢过程(类固醇代谢过程和细胞脂质代谢过程)的基因表达水平因 STZ 处理而显著改变。

主要发现

在野生型大鼠中,催化胆固醇合成性激素的羟甾醇(17-β)脱氢酶 2(Hsd7b2)的表达在 STZ 处理后显著增加了约 15 倍;然而,在 DPP4 缺陷型大鼠中没有变化。在未处理 STZ 的 DPP4 缺陷型大鼠中,与其他组相比,细胞色素 P450、亚家族 51(Cyp51)和固醇-C4-甲基氧化酶样(Sc4mol)的表达水平显著升高,它们催化胆固醇合成的中间步骤。在 DPP4 过表达或添加含有 DPP4 的人血清后,HuH7 细胞中也得到了类似的结果。

意义

DPP4 对于调节与类固醇代谢相关的因素(如 Cyp51、Sc4mol 和 Hsd17b2)的表达至关重要,DPP4 缺乏或抑制可能导致血脂异常。

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