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Notch细胞内结构域在小鼠毛囊发育过程中具有RBPj非依赖性作用。

The Notch Intracellular Domain Has an RBPj-Independent Role during Mouse Hair Follicular Development.

作者信息

Turkoz Mustafa, Townsend R Reid, Kopan Raphael

机构信息

Division of Developmental Biology, Children's Hospital Medical Center, Cincinnati, Ohio, USA; Department of Developmental Biology, Washington University School of Medicine, Saint Louis, Missouri, USA.

Department of Medicine, Washington University School of Medicine, Saint Louis, Missouri, USA; Department of Cell Biology and Physiology, Washington University School of Medicine, Saint Louis, Missouri, USA.

出版信息

J Invest Dermatol. 2016 Jun;136(6):1106-1115. doi: 10.1016/j.jid.2016.02.018. Epub 2016 Mar 3.

Abstract

Ligand-dependent activation, γ-secretase-processed cleavage, and recombining binding protein Jk (RBPj)-mediated downstream transcriptional activities of Notch receptors constitute the "canonical" Notch signaling pathway, which is essential for skin organogenesis. However, in Msx2-Cre mice, keratinocyte-specific deletion of the Rbpj gene in utero produced a significantly milder phenotype than either global Notch or γ-secretase loss. Herein, we investigated the underlying mechanisms for this apparent noncanonical signal using mouse genetics. We found no evidence that ligand back-signaling contributed to skin organogenesis. The perdurance of RBPj protein did not establish an epigenetic memory of a canonical signal in the youngest epidermal stem cells, and Notch targets were not derepressed. We provide evidence that γ-secretase-dependent but RBPj-independent Notch intracellular domain activity operating in the first hair follicles is responsible for a delay in follicular destruction, which results in lower serum thymic stromal lymphopoietin levels, milder B-cell lymphoproliferative disease, and improved survival in Msx2-Cre(+/tg);Rbpj(f/f) mice. Minimal amounts of the Notch intracellular domain were sufficient for rescue, which was not mediated by transcription, suggesting that the Notch intracellular domain is acting through a novel mechanism.

摘要

配体依赖性激活、γ-分泌酶处理的切割以及Notch受体的重组结合蛋白Jk(RBPj)介导的下游转录活性构成了“经典”Notch信号通路,这对皮肤器官发生至关重要。然而,在Msx2-Cre小鼠中,子宫内角质形成细胞特异性缺失Rbpj基因所产生的表型比整体Notch缺失或γ-分泌酶缺失明显要轻。在此,我们利用小鼠遗传学研究了这种明显的非经典信号的潜在机制。我们没有发现配体反向信号传导有助于皮肤器官发生的证据。RBPj蛋白的持久性并未在最年轻的表皮干细胞中建立经典信号的表观遗传记忆,并且Notch靶标也没有去抑制。我们提供的证据表明,在第一个毛囊中起作用的γ-分泌酶依赖性但RBPj非依赖性的Notch细胞内结构域活性导致毛囊破坏延迟,这使得血清胸腺基质淋巴细胞生成素水平降低、B细胞淋巴增殖性疾病减轻,并且Msx2-Cre(+/tg);Rbpj(f/f)小鼠的存活率提高。极少量的Notch细胞内结构域就足以实现拯救,这不是由转录介导的,表明Notch细胞内结构域是通过一种新机制起作用的。

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本文引用的文献

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