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NOTCH1在衰老过程中介导两种不同分泌组之间的转换。

NOTCH1 mediates a switch between two distinct secretomes during senescence.

作者信息

Hoare Matthew, Ito Yoko, Kang Tae-Won, Weekes Michael P, Matheson Nicholas J, Patten Daniel A, Shetty Shishir, Parry Aled J, Menon Suraj, Salama Rafik, Antrobus Robin, Tomimatsu Kosuke, Howat William, Lehner Paul J, Zender Lars, Narita Masashi

机构信息

University of Cambridge, Cancer Research UK Cambridge Institute, Robinson Way, Cambridge CB2 0RE, UK.

University of Cambridge, Department of Medicine, Addenbrooke's Hospital, Cambridge CB2 0QQ, UK.

出版信息

Nat Cell Biol. 2016 Sep;18(9):979-92. doi: 10.1038/ncb3397. Epub 2016 Aug 15.

Abstract

Senescence, a persistent form of cell-cycle arrest, is often associated with a diverse secretome, which provides complex functionality for senescent cells within the tissue microenvironment. We show that oncogene-induced senescence is accompanied by a dynamic fluctuation of NOTCH1 activity, which drives a TGF-β-rich secretome, while suppressing the senescence-associated pro-inflammatory secretome through inhibition of C/EBPβ. NOTCH1 and NOTCH1-driven TGF-β contribute to 'lateral induction of senescence' through a juxtacrine NOTCH-JAG1 pathway. In addition, NOTCH1 inhibition during senescence facilitates upregulation of pro-inflammatory cytokines, promoting lymphocyte recruitment and senescence surveillance in vivo. As enforced activation of NOTCH1 signalling confers a near mutually exclusive secretory profile compared with typical senescence, our data collectively indicate that the dynamic alteration of NOTCH1 activity during senescence dictates a functional balance between these two distinct secretomes: one representing TGF-β and the other pro-inflammatory cytokines, highlighting that NOTCH1 is a temporospatial controller of secretome composition.

摘要

衰老,一种细胞周期停滞的持续形式,通常与多种分泌组相关,该分泌组为组织微环境中的衰老细胞提供复杂功能。我们发现,癌基因诱导的衰老伴随着NOTCH1活性的动态波动,其驱动富含TGF-β的分泌组,同时通过抑制C/EBPβ抑制衰老相关的促炎分泌组。NOTCH1和NOTCH1驱动的TGF-β通过旁分泌NOTCH-JAG1途径促成“衰老的侧向诱导”。此外,衰老过程中NOTCH1的抑制促进促炎细胞因子的上调,促进体内淋巴细胞募集和衰老监测。由于与典型衰老相比,NOTCH1信号的强制激活赋予了几乎相互排斥的分泌谱,我们的数据共同表明,衰老过程中NOTCH1活性的动态变化决定了这两种不同分泌组之间的功能平衡:一种代表TGF-β,另一种代表促炎细胞因子,突出表明NOTCH1是分泌组组成的时空控制器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adf6/5008465/b71803528e33/emss-69176-f001.jpg

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