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Cell Div. 2010 Feb 5;5(1):6. doi: 10.1186/1747-1028-5-6.
2
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Gestational diabetes leads to down-regulation of CDK4-pRB-E2F1 pathway genes in pancreatic islets of rat offspring.妊娠期糖尿病导致大鼠后代胰岛中CDK4-pRB-E2F1信号通路基因表达下调。
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Re-thinking cell cycle regulators: the cross-talk with metabolism.重新思考细胞周期调控因子:与代谢的相互作用。
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2
Association of polymorphic markers of genes , and with type 2 diabetes mellitus in the Russian population.俄罗斯人群中基因、和的多态性标记与2型糖尿病的关联。
PeerJ. 2017 Jul 13;5:e3414. doi: 10.7717/peerj.3414. eCollection 2017.
3
Gestational diabetes leads to down-regulation of CDK4-pRB-E2F1 pathway genes in pancreatic islets of rat offspring.妊娠期糖尿病导致大鼠后代胰岛中CDK4-pRB-E2F1信号通路基因表达下调。
Iran J Basic Med Sci. 2017 Feb;20(2):150-154. doi: 10.22038/ijbms.2017.8240.

本文引用的文献

1
Cell cycle regulators in the control of metabolism.细胞周期调控因子在代谢控制中的作用。
Cell Cycle. 2009 Dec 15;8(24):4029-31. doi: 10.4161/cc.8.24.10110. Epub 2009 Dec 17.
2
The CDK4-pRB-E2F1 pathway controls insulin secretion.细胞周期蛋白依赖性激酶4-视网膜母细胞瘤蛋白-E2F1通路调控胰岛素分泌。
Nat Cell Biol. 2009 Aug;11(8):1017-23. doi: 10.1038/ncb1915. Epub 2009 Jul 13.
3
Mouse development with a single E2F activator.具有单一E2F激活因子的小鼠发育
Nature. 2008 Aug 28;454(7208):1137-41. doi: 10.1038/nature07066. Epub 2008 Jun 25.
4
Critical roles for macrophages in islet angiogenesis and maintenance during pancreatic degeneration.巨噬细胞在胰腺退变过程中胰岛血管生成和维持中的关键作用。
Diabetes. 2008 Jun;57(6):1605-17. doi: 10.2337/db07-1577. Epub 2008 Mar 28.
5
Beta-cell replication is the primary mechanism subserving the postnatal expansion of beta-cell mass in humans.β细胞复制是人类出生后β细胞质量增加的主要机制。
Diabetes. 2008 Jun;57(6):1584-94. doi: 10.2337/db07-1369. Epub 2008 Mar 11.
6
Adipose tissue-specific inactivation of the retinoblastoma protein protects against diabesity because of increased energy expenditure.视网膜母细胞瘤蛋白在脂肪组织中的特异性失活可因能量消耗增加而预防糖尿病肥胖症。
Proc Natl Acad Sci U S A. 2007 Jun 19;104(25):10703-8. doi: 10.1073/pnas.0611568104. Epub 2007 Jun 7.
7
Growth and regeneration of adult beta cells does not involve specialized progenitors.成年β细胞的生长和再生不涉及特定的祖细胞。
Dev Cell. 2007 May;12(5):817-26. doi: 10.1016/j.devcel.2007.04.011.
8
Insulin receptors in beta-cells are critical for islet compensatory growth response to insulin resistance.β细胞中的胰岛素受体对于胰岛对胰岛素抵抗的代偿性生长反应至关重要。
Proc Natl Acad Sci U S A. 2007 May 22;104(21):8977-82. doi: 10.1073/pnas.0608703104. Epub 2007 Apr 6.
9
Differential effects of p27 in regulation of beta-cell mass during development, neonatal period, and adult life.p27在发育、新生儿期及成年期对β细胞量调节中的差异作用。
Diabetes. 2006 Dec;55(12):3520-8. doi: 10.2337/db06-0861.
10
p16INK4a induces an age-dependent decline in islet regenerative potential.p16INK4a诱导胰岛再生潜能出现年龄依赖性下降。
Nature. 2006 Sep 28;443(7110):453-7. doi: 10.1038/nature05092. Epub 2006 Sep 6.

CDK4、pRB 和 E2F1:与胰岛素有关。

CDK4, pRB and E2F1: connected to insulin.

机构信息

IRCM, Institut de Recherche en Cancérologie de Montpellier, Montpellier, F-34298, France.

出版信息

Cell Div. 2010 Feb 5;5(1):6. doi: 10.1186/1747-1028-5-6.

DOI:10.1186/1747-1028-5-6
PMID:20181095
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2829545/
Abstract

Pancreatic beta-cells are metabolic sensors involved in the control of glucose homeostasis. This particular cell type controls insulin secretion through a fine-tuned process, which dregulation have important pathological consequences, such as observed during type 2 diabetes. We recently implicated E2F1 in the control of glucose homeostasis. First we showed that E2f1-/- mice have decreased pancreatic size, as the result of impaired postnatal pancreatic growth. We observed in this study that E2F1 was highly expressed in non-proliferating pancreatic beta-cells, suggesting that E2F1, besides the control of beta-cell number could have a role in pancreatic beta-cell function. We demonstrate in our recent study, both in vitro and in vivo that E2F1 directly regulates the expression of Kir6.2, a key component of the KATP channel involved in the regulation of glucose-induced insulin secretion in pancreatic beta-cells. Expression of Kir6.2 is lost in pancreas of E2f1-/- mice, resulting in insulin secretion defects in these mice. Furthermore, we demonstrated by in tissue chromatin immunoprecipitation analysis that regulation of Kir6.2 expression by E2F1 follows the same regulatory pathway that the classical E2F1 target genes, implicating the participation of CDK4 and retinoblastoma protein. Moreover, in this context, E2F1 transcriptional activity is regulated by glucose and insulin through the CDK4-dependent inactivation of the pRB protein. In summary we provide evidence that the CDK4-pRB-E2F1 regulatory pathway is involved in glucose homeostasis. In our recent study we decipher a new function for these factors in the control of insulin secretion and open up new avenues for the treatment of metabolic diseases, in particular type 2 diabetes.

摘要

胰岛β细胞是参与葡萄糖稳态控制的代谢传感器。这种特殊的细胞类型通过精细的调节过程控制胰岛素分泌,其失调会产生重要的病理后果,如 2 型糖尿病中观察到的那样。我们最近发现 E2F1 参与了葡萄糖稳态的控制。首先,我们发现 E2f1-/- 小鼠的胰腺体积减小,这是由于出生后胰腺生长受损所致。在这项研究中,我们观察到 E2F1 在非增殖的胰岛β细胞中高表达,这表明 E2F1 除了控制β细胞数量外,还可能在胰岛β细胞功能中发挥作用。我们在最近的研究中证明,无论是在体外还是体内,E2F1 都可以直接调节 Kir6.2 的表达,Kir6.2 是参与调节胰岛β细胞葡萄糖诱导胰岛素分泌的 KATP 通道的关键组成部分。E2f1-/- 小鼠的胰腺中 Kir6.2 的表达丢失,导致这些小鼠胰岛素分泌缺陷。此外,我们通过组织染色质免疫沉淀分析证明,E2F1 对 Kir6.2 表达的调控遵循与经典 E2F1 靶基因相同的调控途径,这意味着 CDK4 和视网膜母细胞瘤蛋白的参与。此外,在这种情况下,E2F1 的转录活性通过 CDK4 依赖性的 pRB 蛋白失活来调节葡萄糖和胰岛素。总之,我们提供了证据表明,CDK4-pRB-E2F1 调节途径参与葡萄糖稳态。在我们最近的研究中,我们发现这些因子在控制胰岛素分泌方面具有新的功能,并为代谢性疾病(特别是 2 型糖尿病)的治疗开辟了新的途径。