Rachdi Latif, Balcazar Norman, Elghazi Lynda, Barker Daniel J, Krits Irina, Kiyokawa Hiroaki, Bernal-Mizrachi Ernesto
Washington University School of Medicine, 660 S. Euclid Ave., Campus Box 8127, St. Louis, MO 63110, USA.
Diabetes. 2006 Dec;55(12):3520-8. doi: 10.2337/db06-0861.
beta-Cell cycle progression and proliferation are critical to maintain beta-cell mass in adult mice. Of the cell cycle inhibitors, p27Kip1 is thought to be the primary modulator of the proliferative status in most cell types. p27 plays a role in beta-cell adaptation in genetic models of insulin resistance. To study the role of p27 in beta-cells during physiological conditions and at different stages of beta-cell differentiation, we studied mice deficient of or overexpressing p27. Experiments in p27-deficient mice showed improved glucose tolerance and hyperinsulinemia. These changes were associated with increased islet mass and proliferation. The experiments overexpressing p27 in beta-cells were performed using a doxycycline-inducible model. Interestingly, overexpression of p27 for 16 weeks in beta-cells from adult mice had no effect on glucose tolerance, beta-cell mass, or proliferation. In contrast, induction of p27 expression during beta-cell development or early neonatal period resulted in severe glucose intolerance and reduced beta-cell mass by decreased proliferation. These changes were reversible upon discontinuation of doxycycline. These experiments suggest that p27 is a critical molecule for beta-cell proliferation during beta-cell development and early postnatal life but not for maintenance of adult mass.
β细胞周期进程和增殖对于维持成年小鼠的β细胞量至关重要。在细胞周期抑制剂中,p27Kip1被认为是大多数细胞类型中增殖状态的主要调节因子。p27在胰岛素抵抗的遗传模型中的β细胞适应过程中发挥作用。为了研究p27在生理条件下以及β细胞分化不同阶段的β细胞中的作用,我们研究了p27缺失或过表达的小鼠。对p27基因敲除小鼠进行的实验显示糖耐量改善和高胰岛素血症。这些变化与胰岛体积增大和增殖增加有关。在β细胞中过表达p27的实验是使用强力霉素诱导模型进行的。有趣的是,在成年小鼠的β细胞中过表达p27 16周对糖耐量、β细胞量或增殖没有影响。相反,在β细胞发育或新生儿早期诱导p27表达会导致严重的糖耐量异常,并通过减少增殖使β细胞量减少。停用强力霉素后这些变化是可逆的。这些实验表明,p27是β细胞发育和出生后早期β细胞增殖的关键分子,但不是维持成年β细胞量的关键分子。