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GSK-3 的失活或耗竭通过下调 CDK 抑制剂 p27(Kip1)促进β细胞复制。

GSK-3 inactivation or depletion promotes β-cell replication via down regulation of the CDK inhibitor, p27 (Kip1).

机构信息

Section of Adult and Pediatric Endocrinology, Diabetes and Metabolism, Department of Medicine, University of Chicago, Chicago, IL, USA.

出版信息

Islets. 2011 Jan-Feb;3(1):21-34. doi: 10.4161/isl.3.1.14435. Epub 2011 Jan 1.

DOI:10.4161/isl.3.1.14435
PMID:21278490
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3060436/
Abstract

Diabetes (T1DM and T2DM) is characterized by a deficit in β-cell mass. A broader understanding of human β-cell replication mechanism is thus important to increase β-cell proliferation for future therapeutic interventions. Here, we show that p27 (Kip1), a CDK inhibitor, is expressed abundantly in isolated adult human islets and interacts with various positive cell cycle regulatory proteins including D-type cyclins (D1, D2 and D3) and their kinase partners, CDK4 and CDK6. Also, we see interaction of cyclin E and its kinase partner, CDK2, with p27 suggesting a critical role of p27 as a negative cell cycle regulator in human islets. Our data demonstrate interaction of p27 with GSK-3 in β-cells and show, employing rodent β-cells (INS-1), isolated human islets and purified β-cells derived from human islets, that siRNA-mediated depletion of GSK-3 or p27 or 1-AKP / BIO - mediated GSK-3 inhibition results in increased β-cell proliferation. We also see reduction of p27 levels following GSK-3 inactivation or depletion. Our data show that serum induction of quiescent INS-1 cells leads to sequential phosphorylation of p27 on its S10 and T187 residues with faster kinetics for S10 corresponding with the decreased levels of p27. Altogether our findings indicate that p27 levels in β-cells are stabilized by GSK-3 and thus p27 down regulation following GSK-3 depletion / inactivation plays a critical role in promoting β-cell replication.

摘要

糖尿病(T1DM 和 T2DM)的特征是β细胞数量不足。因此,更广泛地了解人类β细胞复制机制对于未来的治疗干预措施增加β细胞增殖非常重要。在这里,我们表明 p27(Kip1),一种 CDK 抑制剂,在分离的成人胰岛中大量表达,并与各种正细胞周期调节蛋白相互作用,包括 D 型细胞周期蛋白(D1、D2 和 D3)及其激酶伴侣 CDK4 和 CDK6。此外,我们还观察到 cyclin E 及其激酶伴侣 CDK2 与 p27 的相互作用,表明 p27 在人类胰岛中作为负细胞周期调节剂具有重要作用。我们的数据表明 p27 与 GSK-3 在β细胞中的相互作用,并使用啮齿动物β细胞(INS-1)、分离的人胰岛和从人胰岛中分离的纯化β细胞表明,siRNA 介导的 GSK-3 或 p27 或 1-AKP / BIO 介导的 GSK-3 抑制的耗竭导致β细胞增殖增加。我们还观察到 GSK-3 失活或耗竭后 p27 水平降低。我们的数据表明,血清诱导静止的 INS-1 细胞导致 p27 在其 S10 和 T187 残基上的顺序磷酸化,S10 的磷酸化动力学更快,与 p27 水平降低相对应。总之,我们的研究结果表明,β细胞中的 p27 水平由 GSK-3 稳定,因此 GSK-3 耗竭/失活后 p27 的下调在促进β细胞复制中起着关键作用。

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Conditional ablation of Gsk-3β in islet beta cells results in expanded mass and resistance to fat feeding-induced diabetes in mice.胰岛β细胞中 Gsk-3β 的条件性缺失导致小鼠胰岛质量增加和抵抗脂肪喂养诱导的糖尿病。
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