Revealing potential Rab proteins participate in regulation of secretory autophagy machinery

Author:

Lin Pei‐Wen1ORCID,Chu Man‐Ling12ORCID,Liu Yu‐Wen1,Chen Yu‐Cing1,Shih Yao‐Hsiang3ORCID,Lan Sheng‐Hui4,Wu Shang‐Ying5,Kuo I‐Ying6,Chang Hong‐Yi3ORCID,Liu Hsiao‐Sheng1278ORCID,Lee Ying‐Ray191011

Affiliation:

1. Master of Science Program in Tropical Medicine, College of Medicine Kaohsiung Medical University Kaohsiung Taiwan

2. Department of Microbiology and Immunology College of Medicine, National Cheng Kung University Tainan Taiwan

3. Department of Anatomy School of Medicine, College of Medicine, Kaohsiung Medical University Kaohsiung Taiwan

4. Department of Life Sciences and Institute of Genome Sciences National Yang Ming Chiao Tung University Taipei Taiwan

5. Department of Microbiology and Immunology School of Medicine, College of Medicine, Taipei Medical University Taipei Taiwan

6. Department of Biotechnology College of Life Science, Kaohsiung Medical University Kaohsiung Taiwan

7. Center for Cancer Research Kaohsiung Medical University Kaohsiung Taiwan

8. Teaching and Research Center, Kaohsiung Municipal Hsiao‐Kang Hospital Kaohsiung Taiwan

9. Department of Microbiology and Immunology College of Medicine, Kaohsiung Medical University Kaohsiung Taiwan

10. Faculty of Post‐Baccalaureate Medicine, College of Medicine, Kaohsiung Medical University Kaohsiung Taiwan

11. Center for Tropical Medicine and Infectious Disease, Kaohsiung Medical University Kaohsiung Taiwan

Abstract

AbstractAutophagy can be classified as degradative and secretory based on distinct functions. The small GTPase proteins Rab8a and Rab37 are responsible for secretory autophagy‐mediated exocytosis of IL‐1β, insulin, and TIMP1 (tissue inhibitor of 54 metalloproteinase 1). Other Rab family members participating in secretory autophagy are poorly understood. Herein, we identified 26 overlapped Rab proteins in purified autophagosomes of mouse pancreatic β‐cell “Min‐6” and human lung cancer cell “CL1‐5‐Q89L” with high secretory autophagy tendency by LC–MS/MS proteomics analysis. Six Rab proteins (Rab8a, Rab11b, Rab27a, Rab35, Rab37, and Rab7a) were detected in autophagosomes of four cell lines, associating them with autophagy‐related vesicle trafficking. We used CL1‐5‐Q89L cell line model to evaluate the levels of Rab proteins colocalization with autophagy LC3 proteins and presence in purified autophagosomes. We found five Rab proteins (Rab8a, Rab11b, Rab27a, Rab35, and Rab37) are highly expressed in the autophagosome compared to the normal control by immunoblotting under active secretion conditions. However, only Rab8a, Rab35, and Rab37 showing high colocalization with LC3 protein by cofocal microscopy. Despite the discrepancy between the image and immunoblotting analysis, our data sustains the speculation that Rab8a, Rab11b, Rab27a, Rab35, and Rab37 are possibly associated with the secretory autophagy machinery. In contrast, Rab7a shows low colocalization with LC3 puncta and low level in the autophagosome, suggesting it regulates different vesicle trafficking machineries. Our findings open a new direction toward exploring the role of Rab proteins in secretory autophagy‐related cargo exocytosis and identifying the cargoes and effectors regulated by specific Rab proteins.

Funder

National Science and Technology Council

Kaohsiung Medical University

Publisher

Wiley

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