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Updated: Jul 12, 2025

Author Spotlight: Imaging ATG9A, a Multi-Spanning Membrane Protein
Published on: June 16, 2023
The role of ATG5 beyond Atg8ylation and autophagy
Fulong Wang1,2, Einar S Trosdal1,2, Masroor Ahmad Paddar1,2
1Autophagy, Inflammation and Metabolism Center of Biochemical Research Excellence, University of New Mexico School of Medicine, Albuquerque, NM, USA.
Abstract:
ATG5 plays a pivotal role in membrane Atg8ylation, influencing downstream processes encompassing canonical autophagy and noncanonical processes. Remarkably, genetic ablation of ATG5 in myeloid cells leads to an exacerbated pathological state in murine models of tuberculosis, characterized by an early surge in mortality much more severe when compared to the depletion of other components involved in Atg8ylation or canonical autophagy. This study shows that in the absence of ATG5, but not other core canonical autophagy factors, endolysosomal organelles display a lysosomal hypersensitivity phenotype when subjected to damage. This is in part due to a compromised recruitment of ESCRT proteins to lysosomes in need of repair. Mechanistically, in the absence of ATG5, the ESCRT protein PDCD6IP/ALIX is sequestered by the alternative conjugate ATG12-ATG3, contributing to excessive exocytic processes while not being available for lysosomal repair. Specifically, this condition increases secretion of extracellular vesicles and particles, and leads to excessive degranulation in neutrophils. Our findings uncover unique functions of ATG5 outside of the autophagy and Atg8ylation paradigm. This finding is of in vivo relevance for tuberculosis pathogenesis as modeled in mice.Abbreviations: Atg5: autophagy related 5; ESCRT: endosomal sorting complex required for transport; EVPs: extracellular vesicles and particles; FPR1: formyl peptide receptor 1; LyHYP: lysosomal hypersensitivity phenotype; LysoIP: lysosome immunopurification; Mtb: Mycobacterium tuberculosis; ORF3a: open reading frame 3a protein; PDCD6IP/ALIX: programmed cell death 6 interacting protein; SARS-CoV-2: severe acute respiratory syndrome coronavirus 2, TFEB: transcription factor EB.
Insights
Autophagy related 5 (ATG5) is crucial for lysosomal repair and prevents excessive secretion, with its absence worsening tuberculosis in mice by impairing ESCRT protein function.
Area of Science:
- Cell Biology
- Immunology
- Molecular Biology
Background:
- Autophagy related 5 (ATG5) is essential for membrane Atg8ylation and autophagy.
- ATG5 deficiency in myeloid cells exacerbates tuberculosis pathology in mice.
- Lysosomal damage response is impaired in ATG5-deficient cells.
Purpose of the Study:
- To investigate the unique role of ATG5 beyond canonical autophagy.
- To elucidate the mechanism by which ATG5 deficiency affects lysosomal repair.
- To understand the implications of ATG5 function in tuberculosis pathogenesis.
Main Methods:
- Genetic ablation of ATG5 in myeloid cells.
- Analysis of lysosomal hypersensitivity phenotype (LyHYP).
- Assessment of endosomal sorting complex required for transport (ESCRT) protein recruitment.
- Investigation of extracellular vesicle and particle (EVP) secretion and neutrophil degranulation.
Main Results:
- Absence of ATG5, but not other autophagy factors, causes lysosomal hypersensitivity to damage.
- ATG5 deficiency impairs ESCRT protein recruitment to damaged lysosomes.
- PDCD6IP/ALIX is sequestered by ATG12-ATG3, leading to increased EVPs and neutrophil degranulation.
- ATG5 absence exacerbates tuberculosis mortality in mice.
Conclusions:
- ATG5 has critical functions independent of canonical autophagy and Atg8ylation.
- ATG5 is vital for lysosomal integrity and preventing excessive exocytosis.
- Dysregulation of ATG5 contributes to severe tuberculosis pathogenesis.
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