Targeting SQSTM1/p62 Induces Cargo Loading Failure and Converts Autophagy to Apoptosis via NBK/Bik

Author:

Chen Shuang1,Zhou Liang1,Zhang Yu12,Leng Yun13,Pei Xin-Yan1,Lin Hui1,Jones Richard4,Orlowski Robert Z.4,Dai Yun1,Grant Steven15

Affiliation:

1. Department of Medicine, Virginia Commonwealth University and Massey Cancer Center, Richmond, Virginia, USA

2. National Engineering Laboratory for Druggable Gene and Protein Screening, Northeast Normal University, Changchun, Jilin, China

3. Department of Hematology, Beijing Chaoyang Hospital of Capital Medical University, Beijing, China

4. Department of Lymphoma and Myeloma, University of Texas M. D. Anderson Cancer Center, Houston, Texas, USA

5. Department of Biochemistry, Virginia Commonwealth University and Massey Cancer Center and Virginia Institute of Molecular Medicine, Richmond, Virginia, USA

Abstract

ABSTRACT In selective autophagy, the adaptor protein SQSTM1/p62 plays a critical role in recognizing/loading cargo (e.g., malfolded proteins) into autophagosomes for lysosomal degradation. Here we report that whereas SQSTM1/p62 levels fluctuated in a time-dependent manner during autophagy, inhibition or knockdown of Cdk9/cyclin T1 transcriptionally downregulated SQSTM1/p62 but did not affect autophagic flux. These interventions, or short hairpin RNA (shRNA) directly targeting SQSTM1/p62, resulted in cargo loading failure and inefficient autophagy, phenomena recently described for Huntington's disease neurons. These events led to the accumulation of the BH3-only protein NBK/Bik on endoplasmic reticulum (ER) membranes, most likely by blocking loading and autophagic degradation of NBK/Bik, culminating in apoptosis. Whereas NBK/Bik upregulation was further enhanced by disruption of distal autophagic events (e.g., autophagosome maturation) by chloroquine (CQ) or Lamp2 shRNA, it was substantially diminished by inhibition of autophagy initiation (e.g., genetically by shRNA targeting Ulk1, beclin-1, or Atg5 or pharmacologically by 3-methyladenine [3-MA] or spautin-1), arguing that NBK/Bik accumulation stems from inefficient autophagy. Finally, NBK/Bik knockdown markedly attenuated apoptosis in vitro and in vivo . Together, these findings identify novel cross talk between autophagy and apoptosis, wherein targeting SQSTM1/p62 converts cytoprotective autophagy to an inefficient form due to cargo loading failure, leading to NBK/Bik accumulation, which triggers apoptosis.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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