Destabilization of microrchidia family CW‐type zinc finger 2 via the cyclin‐dependent kinase 1‐chaperone‐mediated autophagy pathway promotes mitotic arrest and enhances cancer cellular sensitivity to microtubule‐targeting agents

Author:

Hu Shu‐Yuan1,Qian Jin‐Xian2,Yang Shao‐Ying3,Andriani Lisa2,Liao Li3,Deng Ling1,Huang Min‐Ying1,Zhang Yin‐Ling3,Zhang Fang‐Lin3,Shao Zhi‐Min12345,Li Da‐Qiang12345ORCID

Affiliation:

1. Shanghai Cancer Center and Institutes of Biomedical Sciences, Shanghai Medical College Fudan University Shanghai China

2. Department of Breast Surgery, Shanghai Medical College Fudan University Shanghai China

3. Cancer Institute, Shanghai Medical College Fudan University Shanghai China

4. Department of Oncology, Shanghai Medical College Fudan University Shanghai China

5. Shanghai Key Laboratory of Breast Cancer, Shanghai Medical College Fudan University Shanghai China

Abstract

AbstractBackgroundMicrotubule‐targeing agents (MTAs), such as paclitaxel (PTX) and vincristine (VCR), kill cancer cells through activtion of the spindle assembly checkpoint (SAC) and induction of mitotic arrest, but the development of resistance poses significant clinical challenges.MethodsImmunoblotting and RT‐qPCR were used to investigate potential function and related mechanism of MORC2. Flow cytometry analyses were carried out to determine cell cycle distribution and apoptosis. The effect of MORC2 on cellular sensitivity to PTX and VCR was determined by immunoblotting, flow cytometry, and colony formation assays. Immunoprecipitation assays and immunofluorescent staining were utilized to investigate protein‐protein interaction and protein co‐localization.ResultsHere, we identified microrchidia family CW‐type zinc finger 2 (MORC2), a poorly characterized oncoprotein, as a novel regulator of SAC activation, mitotic progression, and resistance of cancer cells to PTX and VCR. Mechanically, PTX and VCR activate cyclin‐dependent kinase 1, which in turn induces MORC2 phosphorylation at threonine 717 (T717) and T733. Phosphorylated MORC2 enhances its interation with HSPA8 and LAMP2A, two essential components of the chaperone‐mediated autophagy (CMA) mechinery, resulting in its autophagic degradation. Degradation of MORC2 during mitosis leads to SAC activation through stabilizing anaphase promoting complex/cyclosome activator protein Cdc20 and facilitating mitotic checkpoint complex assembly, thus contributing to mitotic arrest induced by PTX and VCR. Notably, knockdown of MORC2 promotes mitotic arrest induced by PTX and VCR and enhances the sensitivity of cancer cells to PTX and VCR.ConclusionsCollectively, these findings unveil a previously unrecognized function and regulatory mechanism of MORC2 in mitotic progression and resistance of cancer cells to MTAs. These results also provide a new clue for developing combined treatmentstrategy by targeting MORC2 in combination with MTAs against human cancer.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shanghai

Publisher

Wiley

Subject

Molecular Medicine,Medicine (miscellaneous)

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