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c-Met 缺失会破坏小鼠肝再生过程中 G2/M 进展所需的基因表达程序。

Loss of c-Met disrupts gene expression program required for G2/M progression during liver regeneration in mice.

机构信息

Laboratory of Experimental Carcinogenesis, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, USA.

出版信息

PLoS One. 2010 Sep 16;5(9):e12739. doi: 10.1371/journal.pone.0012739.

Abstract

BACKGROUND

Previous work has established that HGF/c-Met signaling plays a pivotal role in regulating the onset of S phase following partial hepatectomy (PH). In this study, we used Met(fl/fl);Alb-Cre(+/-) conditional knockout mice to determine the effects of c-Met dysfunction in hepatocytes on kinetics of liver regeneration.

METHODOLOGY/PRINCIPAL FINDING: The priming events appeared to be intact in Met(fl/fl);Alb-Cre(+/-) livers. Up-regulation of stress response (MAFK, IKBZ, SOCS3) and early growth response (c-Myc, c-Jun, c-Fos, DUSP1 and 6) genes as assessed by RT-qPCR and/or microarray profiling was unchanged. This was consistent with an early induction of MAPK/Erk and STAT3. However, after a successful completion of the first round of DNA replication, c-Met deficient hepatocytes were blocked in early/mid G2 phase as shown by staining with phosphorylated form of histone H3. Furthermore, loss of c-Met in hepatocytes diminished the subsequent G1/S progression and delayed liver recovery after partial hepatectomy. Upstream signaling pathways involved in the blockage of G2/M transition included lack of persistent Erk1/2 activation and inability to up-regulate the levels of Cdk1, Plk1, Aurora A and B, and Mad2 along with a defective histone 3 phosphorylation and lack of chromatin condensation. Continuous supplementation with EGF in vitro increased proliferation of Met(fl/fl);Alb-Cre(+/-) primary hepatocytes and partially restored expression levels of mitotic cell cycle regulators albeit to a lesser degree as compared to control cultures.

CONCLUSION/SIGNIFICANCE: In conclusion, our results assign a novel non-redundant function for HGF/c-Met signaling in regulation of G2/M gene expression program via maintaining a persistent Erk1/2 activation throughout liver regeneration.

摘要

背景

先前的工作已经证实,HGF/c-Met 信号在部分肝切除(PH)后启动 S 期中发挥关键作用。在这项研究中,我们使用 Met(fl/fl);Alb-Cre(+/-)条件性敲除小鼠来确定肝细胞中 c-Met 功能障碍对肝再生动力学的影响。

方法/主要发现:Met(fl/fl);Alb-Cre(+/-)肝脏中的启动事件似乎是完整的。通过 RT-qPCR 和/或微阵列分析评估的应激反应(MAFK、IKBZ、SOCS3)和早期生长反应(c-Myc、c-Jun、c-Fos、DUSP1 和 6)基因的上调没有改变。这与 MAPK/Erk 和 STAT3 的早期诱导一致。然而,在第一轮 DNA 复制成功完成后,c-Met 缺失的肝细胞在早期/中期 G2 期被阻断,如磷酸化组蛋白 H3 的染色所示。此外,肝细胞中 c-Met 的缺失减少了随后的 G1/S 进展,并延迟了部分肝切除后的肝恢复。涉及 G2/M 转换阻断的上游信号通路包括持续的 Erk1/2 激活缺失以及无法上调 Cdk1、Plk1、Aurora A 和 B、Mad2 的水平,以及缺陷的组蛋白 3 磷酸化和缺乏染色质浓缩。体外持续补充 EGF 可增加 Met(fl/fl);Alb-Cre(+/-)原代肝细胞的增殖,并部分恢复有丝分裂细胞周期调节剂的表达水平,但与对照培养物相比程度较小。

结论

总之,我们的结果表明,HGF/c-Met 信号通过在整个肝再生过程中维持持续的 Erk1/2 激活,在调节 G2/M 基因表达程序中发挥新的非冗余功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0edc/2940888/eec3b1cfe6d2/pone.0012739.g001.jpg

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