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首页> 外文期刊>Anatomy and embryology >Spatial and temporal expression patterns of the cyclin-dependent kinase (CDK) inhibitors p27Kip1 and p57Kip2 during mouse development.
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Spatial and temporal expression patterns of the cyclin-dependent kinase (CDK) inhibitors p27Kip1 and p57Kip2 during mouse development.

机译:小鼠发育过程中细胞周期蛋白依赖性激酶(CDK)抑制剂p27Kip1和p57Kip2的时空表达模式。

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The cyclin-dependent kinase (CDK) inhibitors p27Kip1 and p57Kip2 are thought to regulate progression of the cell cycle. We have previously shown that the phenotypes of p27-/- mice are substantially different from those of p57-/- mice, suggesting that spatial and temporal expression patterns of p27Kip1 and p57Kip2 might be distinct. In this study, the roles of p27Kip1 and p57Kip2 in development were examined by characterizing their expression patterns during mouse embryogenesis by immunohistochemical analysis. Whereas certain organs and tissues (brain, lens, ganglion, lung, heart, liver, skin and kidney) expressed both proteins, others expressed only p27Kip1 (thymus, spleen, retina, testis and ovary) or only p57Kip2 (gut, palate, pancreas, cartilage and skeletal muscle). In addition, some organs expressed both p27Kip1 and p57Kip2 but showed mutually exclusive patterns of distribution among tissues. Thus, in the adrenal gland, p57Kip2 was expressed in the cortex but not in the medulla, whereas p27Kip1 was expressed in the medulla but not in the cortex. Whereas the expression of p57Kip2 in most tissues was restricted to embryogenesis, expression of p27Kip1 in many tissues was maintained in adult animals. Double-label immunofluorescence staining with either anti-p27Kip1 or anti-p57Kip2 and anti-BrdU revealed that the expression of p27Kip1 and p57Kip2 was inversely correlated with cell proliferation, suggesting that p27Kip1 and p57Kip2 are expressed exclusively in postmitotic cells. These complex spatial and temporal patterns of expression are consistent with the phenotypes of mice deficient in p27Kip1 or p57Kip2, and they suggest that these proteins might play important roles in tissue development.
机译:细胞周期蛋白依赖性激酶(CDK)抑制剂p27Kip1和p57Kip2被认为可以调节细胞周期的进程。先前我们已经表明p27-/-小鼠的表型与p57-/-小鼠的表型有很大不同,这表明p27Kip1和p57Kip2的时空表达模式可能不同。在这项研究中,p27Kip1和p57Kip2在发育中的作用通过免疫组织化学分析表征其在小鼠胚胎发生过程中的表达模式,从而进行了研究。某些器官和组织(大脑,晶状体,神经节,肺,心脏,肝脏,皮肤和肾脏)均表达两种蛋白质,而其他器官仅表达p27Kip1(胸腺,脾脏,视网膜,睾丸和卵巢)或p57Kip2(肠,late,胰) ,软骨和骨骼肌)。此外,一些器官同时表达p27Kip1和p57Kip2,但在组织间却显示出互斥的分布模式。因此,在肾上腺中,p57Kip2在皮质中表达,但在髓质中不表达,而p27Kip1在髓质中表达,但在皮质中不表达。在大多数组织中,p57Kip2的表达仅限于胚胎发生,而在成年动物中,许多组织中的p27Kip1的表达得以维持。用抗p27Kip1或抗p57Kip2和抗BrdU进行的双标记免疫荧光染色显示,p27Kip1和p57Kip2的表达与细胞增殖呈负相关,这表明p27Kip1和p57Kip2仅在有丝分裂后的细胞中表达。这些复杂的时空表达模式与缺乏p27Kip1或p57Kip2的小鼠的表型一致,它们表明这些蛋白可能在组织发育中起重要作用。

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