Protein phosphatase 2A-B56γ-Drp1-Rab7 signaling axis regulates mitochondria-lysosome crosstalk to sensitize the anti-cancer therapy of hepatocellular carcinoma

粒体自噬 溶酶体 串扰 细胞生物学 DNM1L型 线粒体 品脱1 癌症研究 生物 蛋白磷酸酶2 脱磷 帕金 自噬 癌细胞 磷酸化 细胞凋亡 化学 磷酸酶 癌症 线粒体分裂 医学 生物化学 内科学 光学 物理 遗传学 疾病 帕金森病
作者
Lin Che,Jia‐Shen Wu,Chi-Yu Xu,Yu-Xin Cai,Jin-Xian Lin,Ze‐Bang Du,Jiazhang Shi,Tun Han,Yu-Qiao He,Yu‐Chun Lin,Zhongning Lin
出处
期刊:Biochemical Pharmacology [Elsevier]
卷期号:202: 115132-115132 被引量:5
标识
DOI:10.1016/j.bcp.2022.115132
摘要

Mitochondria-lysosome crosstalk is an intercellular communication platform regulating mitochondrial quality control (MQC). Activated dynamin-related protein 1 (Drp1) with phosphorylation at serine 616 (p-Drp1Ser616) plays a critical role in mitophagy-dependent cell survival and anti-cancer therapy for hepatocellular carcinoma (HCC). However, the underlying mechanisms that p-Drp1Ser616 involved in regulating mitochondria-lysosome crosstalk and mediating anti-HCC therapy remain unknown. HCC cells and mouse xenograft models were conducted to evaluate the relationship between p-Drp1Ser616 and Ras-associated protein 7 (Rab7) and the underlying mechanism by protein phosphatase 2A (PP2A)-B56γ regulating mitophagy via dephosphorylation of p-Drp1Ser616 in HCC. Herein, we found that Drp1 was frequently upregulated and was associated with poor prognosis in HCC. Mitochondrial p-Drp1Ser616 was a novel inter-organelle tethering protein localized to mitochondrion and lysosome membrane contact sites (MCSs) via interaction with Rab7 to trigger an increase in the mitochondria-lysosome crosstalk, resulting in PINK1-Parkin-dependent mitophagy and anti-apoptosis in HCC cells under the treatment of chemotherapy drugs. Moreover, we demonstrate that B56γ-mediated direct dephosphorylation of p-Drp1Ser616 inhibited mitophagy and thus increased mitochondria-dependent apoptosis. Overall, our findings demonstrated that activation of B56γ sensitizes the anti-cancer effect of HCC chemoprevention via dephosphorylated regulation of p-Drp1Ser616 in inhibiting the interaction between p-Drp1Ser616 and Rab7, which may provide a novel mechanism underlying the theranostics for targeting intervention in HCC.
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