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Notch在发育中的前肾中调节细胞命运。

Notch regulates cell fate in the developing pronephros.

作者信息

McLaughlin K A, Rones M S, Mercola M

机构信息

Department of Cell Biology, Harvard Medical School, 240 Longwood Avenue, Boston, Massachusetts 02115, USA.

出版信息

Dev Biol. 2000 Nov 15;227(2):567-80. doi: 10.1006/dbio.2000.9913.

Abstract

The mechanisms that regulate cell fate within the pronephros are poorly understood but are important for the subsequent development of the urogenital system and show many similarities to nephrogenesis in the definitive kidney. Dynamic expression of Notch-1, Serrate-1, and Delta-1 in the developing Xenopus pronephros suggests a role for this pathway in cell fate segregation. Misactivation of Notch signaling using conditionally active forms of either Notch-1 or RBP-J/Su(H) proteins prevented normal duct formation and the proper expression of genetic markers of duct cell differentiation. Inhibition of endogenous Notch signaling elicited the opposite effect. Taken together with the mRNA expression patterns, these data suggest that endogenous Notch signaling functions to inhibit duct differentiation in the dorsoanterior region of the anlage where cells are normally fated to form tubules. In addition, elevated Notch signaling in the pronephric anlage both perturbed the characteristic pattern of the differentiated tubule network and increased the expression of early markers of pronephric precursor cells, Pax-2 and Wilms' tumor suppressor gene (Wt-1). We propose that Notch signaling plays a previously unrecognized role in the early selection of duct and tubule cell fates as well as functioning subsequently to control tubule cell patterning and development.

摘要

目前对原肾中调节细胞命运的机制了解甚少,但这些机制对泌尿生殖系统的后续发育很重要,并且与成熟肾脏中的肾发生有许多相似之处。在非洲爪蟾发育中的原肾中,Notch-1、锯齿蛋白-1和Delta-1的动态表达表明该信号通路在细胞命运分离中起作用。使用Notch-1或RBP-J/Su(H)蛋白的条件活性形式对Notch信号进行错误激活,会阻止正常导管形成以及导管细胞分化遗传标志物的正确表达。抑制内源性Notch信号则产生相反的效果。结合mRNA表达模式,这些数据表明内源性Notch信号在原基背前部区域发挥作用,抑制导管分化,而该区域的细胞通常注定会形成肾小管。此外,原肾原基中Notch信号的升高既扰乱了分化的肾小管网络的特征模式,又增加了原肾前体细胞早期标志物Pax-2和威尔姆斯肿瘤抑制基因(Wt-1)的表达。我们认为,Notch信号在导管和肾小管细胞命运的早期选择中发挥了先前未被认识的作用,并且在随后控制肾小管细胞模式和发育中也发挥作用。

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