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Definition of a Skp2-c-Myc Pathway to Expand Human Beta-cells

机译:Skp2-c-Myc途径扩展人类Beta细胞的定义

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摘要

Type 2 diabetes (T2D) is characterized by insulin resistance and reduced functional β-cell mass. Developmental differences, failure of adaptive expansion and loss of β-cells via β-cell death or de-differentiation have emerged as the possible causes of this reduced β-cell mass. We hypothesized that the proliferative response to mitogens of human β-cells from T2D donors is reduced, and that this might contribute to the development and progression of T2D. Here, we demonstrate that the proliferative response of human β-cells from T2D donors in response to cdk6 and cyclin D3 is indeed dramatically impaired. We show that this is accompanied by increased nuclear abundance of the cell cycle inhibitor, p27kip1. Increasing nuclear abundance of p27kip1 by adenoviral delivery decreases the proliferative response of β-cells from non-diabetic donors, mimicking T2D β-cells. However, while both p27kip1 gene silencing and downregulation by Skp2 overexpression increased similarly the proliferative response of human β-cells, only Skp2 was capable of inducing a significant human β-cell expansion. Skp2 was also able to double the proliferative response of T2D β-cells. These studies define c-Myc as a central Skp2 target for the induction of cell cycle entry, expansion and regeneration of human T2D β-cells.
机译:2型糖尿病(T2D)的特征是胰岛素抵抗和功能性β细胞量减少。已经出现了发育差异,适应性扩增失败以及由于β细胞死亡或去分化而导致的β细胞丧失,这是导致β细胞质量降低的可能原因。我们假设减少了来自T2D供体的人类β细胞对有丝分裂原的增殖反应,这可能有助于T2D的发展和进程。在这里,我们证明了来自T2D供体的人β细胞对cdk6和细胞周期蛋白D3的增殖反应确实受到了极大的损害。我们发现,这伴随着细胞周期抑制剂p27 kip1 的核丰度增加。腺病毒传递增加p27 kip1 的核丰度会降低非糖尿病供体的β细胞的增殖反应,从而模拟T2Dβ细胞。然而,尽管p27 kip1 基因沉默和Skp2过表达下调都相似地增加了人类β细胞的增殖反应,但只有Skp2能够诱导人类β细胞的显着扩增。 Skp2还能够使T2Dβ细胞的增殖反应增加一倍。这些研究将c-Myc定义为诱导人T2Dβ细胞进入细胞周期,扩增和再生的主要Skp2靶标。

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