Dalgaard Louise T, Billestrup Nils, Nielsen Jens H
a Roskilde University, Department of Science, Universitetsvej 1, DK-4000 Roskilde, Denmark.
b Steno Diabetes Center, Niels Steensens Vej 2, DK-2820 Gentofte, Denmark.
Expert Rev Endocrinol Metab. 2008 Jul;3(4):423-439. doi: 10.1586/17446651.3.4.423.
Signal transducer and activator of transcription (STAT)5A and -5B are latent transcription factors activated by cytokines and hormones of the cytokine family. In pancreatic insulin-secreting β-cells, STAT5A and -5B are activated primarily by prolactin and growth hormone stimulation and are important mediators of the potent stimulation of proliferation and insulin production caused by these hormones. STAT5A and -5B are both expressed in β-cells and control the expression of a number of mRNAs implicated in cell replication control, insulin biosynthesis and secretion. In addition to STAT5A and -5B being transcriptional activators, they may also repress gene transcription. By these means, STAT5 proteins increase the levels of anti-apoptotic transcripts in β-cells and repress expression of pro-apoptotic genes. This review focuses on the anti-apoptotic role of STAT5 signaling, providing a mechanism for β-cell resistance to pro-apoptotic cytokines, Type 1 diabetes mellitus and obesity-associated β-cell stress. It is clear from studies of STAT5 signaling in pancreatic β-cells that STAT5 is important for postnatal β-cell compensatory growth (as in pregnancy or obesity) and in the defense against β-cell stress factors.
信号转导及转录激活因子(STAT)5A和-5B是由细胞因子和细胞因子家族激素激活的潜在转录因子。在胰腺胰岛素分泌β细胞中,STAT5A和-5B主要通过催乳素和生长激素刺激而被激活,并且是这些激素所引起的细胞增殖和胰岛素产生的强效刺激的重要介质。STAT5A和-5B均在β细胞中表达,并控制许多与细胞复制控制、胰岛素生物合成和分泌有关的mRNA的表达。除了作为转录激活因子外,STAT5A和-5B也可能抑制基因转录。通过这些方式,STAT5蛋白增加β细胞中抗凋亡转录本的水平,并抑制促凋亡基因的表达。本综述聚焦于STAT5信号传导的抗凋亡作用,为β细胞对促凋亡细胞因子、1型糖尿病和肥胖相关β细胞应激的抗性提供一种机制。从胰腺β细胞中STAT5信号传导的研究可以清楚地看出,STAT5对于出生后β细胞的代偿性生长(如在妊娠或肥胖中)以及抵御β细胞应激因子很重要。