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Notch1 乙酰化的可逆性调节心肌细胞的增殖信号。

Reversible Notch1 acetylation tunes proliferative signalling in cardiomyocytes.

机构信息

Molecular Medicine Laboratory, International Centre for Genetic Engineering and Biotechnology (ICGEB), Padriciano 99, 34149 Trieste, Italy.

Department of Medical, Surgical and Health Sciences, University of Trieste, Strada di Fiume 447, 34100 Trieste, Italy.

出版信息

Cardiovasc Res. 2018 Jan 1;114(1):103-122. doi: 10.1093/cvr/cvx228.

Abstract

AIMS

The Notch signalling pathway regulates the balance between proliferation and differentiation in several tissues, including the heart. Our previous work has demonstrated that the proliferative potential of neonatal cardiomyocytes relies on Notch1 activity. A deep investigation on the biochemical regulation of the Notch signalling in cardiomyocytes is the focus of the current research.

METHODS AND RESULTS

We show that the Notch1 intracellular domain is acetylated in proliferating neonatal rat cardiomyocytes and that acetylation tightly controls the amplitude and duration of Notch signalling. We found that acetylation extends the half-life of the protein, and enhanced its transcriptional activity, therefore counteracting apoptosis and sustaining cardiomyocyte proliferation. Sirt1 acted as a negative modulator of Notch1 signalling; its overexpression in cardiomyocytes reverted Notch acetylation and dampened its stability. A constitutively acetylated fusion protein between Notch1 and the acetyltransferase domain of p300 promoted cardiomyocyte proliferation, which was remarkably sustained over time. Viral vector-mediated expression of this protein enhanced heart regeneration after apical resection in neonatal mice.

CONCLUSION

These results identify the reversible acetylation of Notch1 as a novel mechanism to modulate its signalling in the heart and tune the proliferative potential of cardiomyocytes.

摘要

目的

Notch 信号通路在包括心脏在内的多种组织中调节增殖和分化之间的平衡。我们之前的工作表明,新生大鼠心肌细胞的增殖潜能依赖于 Notch1 活性。目前的研究重点是深入研究 Notch 信号在心肌细胞中的生化调节。

方法和结果

我们表明 Notch1 细胞内结构域在增殖的新生大鼠心肌细胞中被乙酰化,并且乙酰化严格控制 Notch 信号的幅度和持续时间。我们发现乙酰化延长了蛋白质的半衰期,并增强了其转录活性,从而对抗细胞凋亡并维持心肌细胞增殖。Sirt1 作为 Notch1 信号的负调节剂起作用;其在心肌细胞中的过表达使 Notch 乙酰化逆转,并减弱其稳定性。Notch1 与 p300 乙酰转移酶结构域的组成性乙酰化融合蛋白促进心肌细胞增殖,并且随着时间的推移显著持续。病毒载体介导的该蛋白的表达增强了新生小鼠心尖切除后的心脏再生。

结论

这些结果确定 Notch1 的可逆乙酰化是调节其在心脏中的信号传导并调节心肌细胞增殖潜能的新机制。

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