首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Runx/Cbfb Signaling Regulates Postnatal Development of Granular Convoluted Tubule in the Mouse Submandibular Gland
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Runx/Cbfb Signaling Regulates Postnatal Development of Granular Convoluted Tubule in the Mouse Submandibular Gland

机译:Runx / Cbfb信号调节小鼠下颌腺颗粒状小管的产后发育

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Background:The rodent salivary gland is not fully developed at birth and the cellular definitive differentiation takes place postnatally. However, little is known about its molecular mechanism. Results:Here we provide the loss-of-function genetic evidence that Runx signaling affects postnatal development of the submandibular gland (SMG). Core binding factor (Cbfb) is a cotranscription factor which forms a heterodimer with Runx proteins. Cbfb was specifically expressed in the duct epithelium, specifically in the SMG. Epithelial Cbfb deficiency resulted in decrease in the size of the SMG and in the saliva secretion on postnatal day 35. The Cbfb mutant SMG specifically exhibited involution of the granular convoluted tubules (GCT), with a down-regulated expression of its marker genes, such as Klk1, Ngf, and Egf. The induction of GCT is under the control of androgens, and the Cbfb mutant SMG demonstrated down-regulated expression of Crisp3, an androgen-dependent transcript. Because the circulating testosterone or tissue dihydrotestosterone levels were not affected in the Cbfb mutants, it appears that Runx/Cbfb signaling regulate androgen receptor pathway, but does not affect the circulating testosterone levels or the enzymatic conversion to DHT. Conclusions:Runx signaling is important in the postnatal development of androgen-dependent GCT in the SMG. Developmental Dynamics 244:488-496, 2015. (c) 2014 Wiley Periodicals, Inc.
机译:背景:啮齿动物唾液腺在出生时尚未完全发育,并且细胞的最终分化发生在出生后。但是,对其分子机理了解甚少。结果:在这里,我们提供了功能丧失的遗传证据,证明Runx信号传导会影响下颌下腺(SMG)的出生后发育。核心结合因子(Cbfb)是一种共转录因子,与Runx蛋白形成异二聚体。 Cbfb在导管上皮中特别是在SMG中表达。上皮Cbfb缺乏症导致出生后第35天SMG大小减少和唾液分泌减少。Cbfb突变体SMG特别表现出颗粒状曲折小管(GCT)的内切,其标记基因的表达下调,例如如Klk1,Ngf和Egf。 GCT的诱导受雄激素的控制,Cbfb突变体SMG表现出下调Crisp3的表达,Crisp3是一种雄激素依赖性转录物。因为在Cbfb突变体中循环睾丸激素或组织中的二氢睾丸激素水平没有受到影响,所以Runx / Cbfb信号似乎调节雄激素受体途径,但不影响循环睾丸激素水平或酶促转化为DHT。结论:Runx信号在SMG雄激素依赖性GCT的出生后发展中具有重要作用。 Developmental Dynamics 244:488-496,2015。(c)2014 Wiley Periodicals,Inc.

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