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Membrane shaping and remodeling
Singapore

Activities

Employment (3)

Nanyang Technological University: Singapore, SG

2024-02-01 to present
Employment
Source: Self-asserted source
Sho Suzuki

Cornell University: Ithaca, US

2022-04-01 to 2024-01-31 | Research Associate
Employment
Source: Self-asserted source
Sho Suzuki

Cornell University: Ithaca, NY, US

2015-09-02 to 2022-03-31 | Postdoctoral Fellow (Weill Institute for Cell and Molecular Biology)
Employment
Source: Self-asserted source
Sho Suzuki

Education and qualifications (1)

Tokyo Institute of Technology: Tokyo, Tôkyô, JP

2012-04-01 to 2015-03-31 | Ph.D. (Graduate school of bioscience)
Education
Source: Self-asserted source
Sho Suzuki

Works (15)

TEX264-mediated selective autophagy directs DNA damage repair

Trends in Biochemical Sciences
2025-01 | Journal article
Contributors: Yuxia Qi; Sho W. Suzuki
Source: check_circle
Crossref

A role for Vps13-mediated lipid transfer at the ER–endosome contact site in ESCRT-mediated sorting

Journal of Cell Biology
2024-04-01 | Journal article
Contributors: Sho W. Suzuki; Matthew West; Yichen Zhang; Jenny S. Fan; Rachel T. Roberts; Greg Odorizzi; Scott D. Emr
Source: check_circle
Crossref

A role for Vps13-mediated lipid transfer at the ER-endosome contact site in ESCRT-mediated sorting

2023-07-07 | Preprint
Contributors: Sho W. Suzuki; Matthew West; Yichen Zhang; Jenny S. Fan; Rachel T. Roberts; Greg Odorizzi; Scott D. Emr
Source: check_circle
Crossref

A PX-BAR protein Mvp1/SNX8 and a dynamin-like GTPase Vps1 drive endosomal recycling.

eLife
2021-09-15 | Journal article
Source: Self-asserted source
Sho Suzuki

A bipartite sorting signal ensures specificity of retromer complex in membrane protein recycling.

The Journal of cell biology
2019-07-23 | Journal article
Source: Self-asserted source
Sho Suzuki

Retrograde trafficking from the vacuole/lysosome membrane.

Autophagy
2018-08-17 | Journal article
Source: Self-asserted source
Sho Suzuki

Membrane protein recycling from the vacuole/lysosome membrane.

The Journal of cell biology
2018-03-06 | Journal article
Source: Self-asserted source
Sho Suzuki

The Intrinsically Disordered Protein Atg13 Mediates Supramolecular Assembly of Autophagy Initiation Complexes.

Developmental cell
2016-07-01 | Journal article
Source: Self-asserted source
Sho Suzuki

Phospholipid methylation controls Atg32-mediated mitophagy and Atg8 recycling.

The EMBO journal
2015-10-05 | Journal article
Source: Self-asserted source
Sho Suzuki

The yeast chromatin remodeler Rsc1-RSC complex is required for transcriptional activation of autophagy-related genes and inhibition of the TORC1 pathway in response to nitrogen starvation.

Biochemical and biophysical research communications
2015-07-26 | Journal article
Source: Self-asserted source
Sho Suzuki

Atg13 HORMA domain recruits Atg9 vesicles during autophagosome formation.

Proceedings of the National Academy of Sciences of the United States of America
2015-03-03 | Journal article
Source: Self-asserted source
Sho Suzuki

Structural basis of starvation-induced assembly of the autophagy initiation complex.

Nature structural & molecular biology
2014-05-04 | Journal article
Source: Self-asserted source
Sho Suzuki

The autophagy-related protein kinase Atg1 interacts with the ubiquitin-like protein Atg8 via the Atg8 family interacting motif to facilitate autophagosome formation.

The Journal of biological chemistry
2012-07-09 | Journal article
Source: Self-asserted source
Sho Suzuki

Autophagy-related protein 32 acts as autophagic degron and directly initiates mitophagy.

The Journal of biological chemistry
2012-02-03 | Journal article
Source: Self-asserted source
Sho Suzuki

Starvation induced cell death in autophagy-defective yeast mutants is caused by mitochondria dysfunction.

PloS one
2011-02-25 | Journal article
Source: Self-asserted source
Sho Suzuki