Ratineau Christelle, Bernard Christine, Poncet Gilles, Blanc Martine, Josso Claire, Fontanière Sandra, Calender Alain, Chayvialle Jean Alain, Zhang Chang-Xian, Roche Colette
INSERM U45, 69008 Lyon, France.
J Biol Chem. 2004 Jun 4;279(23):24477-84. doi: 10.1074/jbc.M401835200. Epub 2004 Mar 30.
Menin, the product of the tumor suppressor gene MEN1, is widely expressed in mammalian endocrine and non-endocrine tissues, including intestine. Its known abundant expression in several types of cells with high proliferative capacity led us to investigate the physiological function of the protein menin in intestinal epithelium, one of the most rapidly growing epithelia. Here we showed that the Men1 gene is mainly expressed in the crypt compartment of the proximal small intestine and that its expression was increased during fasting in vivo, both suggesting a role of menin in the control of cell growth. Indeed, specific reduction of menin expression by transfected antisense cDNA in the rat duodenal crypt-like cell line, IEC-17, increased cell proliferation. The latter is correlated to a loss of cell-cycle arrest in G(1) phase by resting cells and an overexpression of cyclin D1 and cyclin-dependent kinase (Cdk)-4. Furthermore, these cells lost the inhibition of proliferation induced by transforming growth factor-beta1, associated with a decrease of transforming growth factor-beta type II receptor expression. As a result of deregulated proliferation, antisense menin transfected IEC-17 cells became tumorigenic as shown in vitro as well as in vivo in immunosuppressed animals. These results indicate that menin contributes to proliferation control in intestinal epithelial cells. The present study reveals an unknown physiological function for menin in intestine that may be important in the regulation of epithelial homeostasis.
Menin是肿瘤抑制基因MEN1的产物,广泛表达于哺乳动物的内分泌和非内分泌组织,包括肠道。其在几种具有高增殖能力的细胞中大量表达,这促使我们研究Menin蛋白在肠上皮(生长最为迅速的上皮组织之一)中的生理功能。在此我们发现,Men1基因主要在近端小肠的隐窝区表达,且在体内禁食期间其表达增加,这两者均提示Menin在细胞生长控制中发挥作用。实际上,在大鼠十二指肠隐窝样细胞系IEC-17中转染反义cDNA特异性降低Menin表达后,细胞增殖增加。后者与静息细胞在G(1)期细胞周期停滞的丧失以及细胞周期蛋白D1和细胞周期蛋白依赖性激酶(Cdk)-4的过表达相关。此外,这些细胞失去了由转化生长因子-β1诱导的增殖抑制作用,这与转化生长因子-β II型受体表达的降低有关。由于增殖失控,转染反义Menin的IEC-17细胞在体外以及免疫抑制动物体内均显示出致瘤性。这些结果表明,Menin有助于控制肠上皮细胞的增殖。本研究揭示了Menin在肠道中未知的生理功能,这可能对上皮内稳态的调节具有重要意义。