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p21 在垂体肿瘤形成过程中是静止的重要介质,在胚胎发生过程中对于正常垂体发育是可有可无的。

p21, an important mediator of quiescence during pituitary tumor formation, is dispensable for normal pituitary development during embryogenesis.

机构信息

Department of Molecular and Integrative Physiology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Mech Dev. 2012 Jan-Feb;128(11-12):640-52. doi: 10.1016/j.mod.2011.11.002. Epub 2011 Dec 1.

Abstract

A delicate balance between proliferation and differentiation must be maintained in the developing pituitary to ensure the formation of the appropriate number of hormone producing cells. In the adult, proliferation is actively restrained to prevent tumor formation. The cyclin dependent kinase inhibitors (CDKIs) of the CIP/KIP family, p21, p27 and p57, mediate cell cycle inhibition. Although p21 is induced in the pituitary upon loss of Notch signaling or initiation of tumor formation to halt cell cycle progression, its role in normal pituitary organogenesis has not been explored. In wildtype pituitaries, expression of p21 is limited to a subset of cells embryonically as well as during the postnatal proliferative phase. Mice lacking p21 do not have altered cell proliferation during early embryogenesis, but do show a slight delay in separation of proliferating progenitors from the oral ectoderm. By embryonic day 16.5, p21 mutants have an alteration in the spatial distribution of proliferating pituitary progenitors, however there is no overall change in proliferation. At postnatal day 21, there appears to be no change in proliferation, as assessed by cells expressing Ki67 protein. However, p21 mutant pituitaries have significantly less mRNA of Myc and the cyclins Ccnb1, Ccnd1, Ccnd2 and Ccne1 than wildtype pituitaries. Interestingly, unlike the redundant role in cell cycle inhibition uncovered in p27/p57 double mutants, the pituitary of p21/p27 double mutants has a similar proliferation profile to p27 single mutants at the time points examined. Taken together, these studies demonstrate that unlike p27 or p57, p21 does not play a major role in control of progenitor proliferation in the developing pituitary. However, p21 may be required to maintain normal levels of cell cycle components.

摘要

在发育中的垂体中,必须维持增殖和分化之间的微妙平衡,以确保产生适当数量的激素分泌细胞。在成年期,增殖受到积极抑制,以防止肿瘤形成。细胞周期蛋白依赖性激酶抑制剂(CDKIs)的 CIP/KIP 家族、p21、p27 和 p57,介导细胞周期抑制。尽管 p21 在垂体 Notch 信号丢失或肿瘤形成开始时被诱导,以阻止细胞周期进程,但它在正常垂体发生中的作用尚未被探索。在野生型垂体中,p21 的表达局限于胚胎期和出生后增殖期的一部分细胞。缺乏 p21 的小鼠在早期胚胎发生期间不会改变细胞增殖,但在增殖祖细胞与口腔外胚层分离时会略有延迟。到胚胎第 16.5 天,p21 突变体中增殖性垂体祖细胞的空间分布发生改变,但增殖总体上没有变化。在出生后第 21 天,用 Ki67 蛋白标记的细胞评估增殖,p21 突变体的增殖似乎没有变化。然而,p21 突变体的垂体中 Myc 和细胞周期蛋白 Ccnb1、Ccnd1、Ccnd2 和 Ccne1 的 mRNA 水平明显低于野生型垂体。有趣的是,与在 p27/p57 双突变体中发现的细胞周期抑制的冗余作用不同,在检查的时间点,p21/p27 双突变体的垂体的增殖谱与 p27 单突变体相似。综上所述,这些研究表明,与 p27 或 p57 不同,p21 在发育中的垂体祖细胞增殖的控制中不发挥主要作用。然而,p21 可能需要维持正常的细胞周期成分水平。

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