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首页> 外文期刊>Development >Mapping the consequence of Notch1 proteolysis in vivo with NIP-CRE.
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Mapping the consequence of Notch1 proteolysis in vivo with NIP-CRE.

机译:用NIP-CRE绘制Notch1蛋白在体内的分解图。

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摘要

The four highly conserved Notch receptors receive short-range signals that control many biological processes during development and in adult vertebrate tissues. The involvement of Notch1 signaling in tissue self-renewal is less clear, however. We developed a novel genetic approach N(1)IP-CRE (Notch1 Intramembrane Proteolysis) to follow, at high resolution, the descendents of cells experiencing Notch1 activation in the mouse. By combining N(1)IP-CRE with loss-of-function analysis, Notch activation patterns were correlated with function during development, self-renewal and malignancy in selected tissues. Identification of many known functions of Notch1 throughout development validated the utility of this approach. Importantly, novel roles for Notch1 signaling were identified in heart, vasculature, retina and in the stem cell compartments of self-renewing epithelia. We find that the probability of Notch1 activation in different tissues does not always indicate a requirement for this receptor and that gradients of Notch1 activation are evident within one organ. These findings highlight an underappreciated layer of complexity of Notch signaling in vivo. Moreover, NIP-CRE represents a general strategy applicable for monitoring proteolysis-dependent signaling in vivo.
机译:四个高度保守的Notch受体接收短距离信号,该信号控制发育过程中和成年脊椎动物组织中的许多生物学过程。但是,Notch1信号在组织自我更新中的参与尚不清楚。我们开发了一种新型的遗传方法N(1)IP-CRE(Notch1膜内蛋白水解),以高分辨率跟踪小鼠中Notch1激活的细胞的后代。通过将N(1)IP-CRE与功能丧失分析相结合,Notch激活模式与特定组织的发育,自我更新和恶性过程中的功能相关。在整个开发过程中对Notch1的许多已知功能的识别验证了此方法的实用性。重要的是,在心脏,脉管系统,视网膜和自我更新的上皮细胞的干细胞区室中,Notch1信号的新作用被确定。我们发现,Notch1激活在不同组织中的可能性并不总是表明对该受体的需求,并且Notch1激活的梯度在一个器官内很明显。这些发现突出了体内Notch信号传导复杂性的未被充分认识的层。此外,NIP-CRE代表了适用于监测体内蛋白水解依赖性信号传导的一般策略。

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