
SAW Thuan Beng
Alumni, Research Associate, Mechanobiology Institute, National University of Singapore
mbistb@nus.edu.sg
Level 9 T-Lab
National University of Singapore
5A Engineering Drive 1
Singapore 117411
What is exocytosis?
What is exocytosis? Exocytosis is defined as the transport and fusion of secretory vesicles with the plasma membrane and the extracellular space. There are three exocytosis pathways that deliver vesicles to the plasma membrane. [...]
What is Fast Endophilin-Mediated Endocytosis (FEME)?
What is Fast Endophilin-Mediated Endocytosis (FEME)? FEME is a novel clathrin-independent endocytic pathway, regulated by the BAR domain protein endophilin, where tubulo-vesicular carriers form within seconds at the plasma membrane upon activation of specific [...]
How are clathrin-coated vesicles uncoated?
How are clathrin-coated vesicles uncoated? Uncoating is the process by which clathrin is removed from clathrin-coated vesicles (CCVs). In mammals, this ATP dependent process is driven by the 70kDa molecular chaperone ‘Heat shock cognate [...]
What is Rho-dependent IL-2 receptor endocytosis?
What is Rho-dependent IL-2 receptor endocytosis? Internalization of transmembrane receptors was thought to occur exclusively via clathrin-mediated endocytosis (CME). However, the discovery of clathrin-independent endocytic routes, in particular, the pathway that mediates the internalization [...]
What is Arf6-associated endocytosis?
What is Arf6-associated endocytosis? Arf6-associated endocytosis is a clathrin-independent, plasma membrane-endosomal recycling pathway, regulated by the Arf6 protein, which is a member of the Arf family of small GTPases [1]. In this pathway, Arf6 [...]
What is the CLIC/GEEC Endocytosis pathway?
What is the CLIC/GEEC Endocytosis pathway? The CLIC/GEEC (CG) pathway is a clathrin-independent endocytic pathway mediated by uncoated tubulovesicular primary carriers called clathrin-independent carriers (CLICs) which arise directly from the plasma membrane and later [...]
Saw Thuan Beng
Alumni, Research Associate
Principal Investigator
Research Interests
Recent Publications
- Jiang X, Xu P, Feng F, Grenci G, and Saw TB. Revealing Electromechanical Control of Tissue Homeostasis Using a Two-Layer Microfluidic Device. J Vis Exp 2025;(223). [PMID: 41052031]
- Wang Y, Wang Y, Zhu Y, Yu P, Zhou F, Zhang A, Gu Y, Jin R, Li J, Zheng F, Yu A, Ye D, Xu Y, Liu Y, Saw TB, Hu G, Lim CT, and Yu F. Angiomotin cleavage promotes leader formation and collective cell migration. Dev Cell 2024;. [PMID: 39389053]
- Delanoë-Ayari H, Hiraiwa T, Marcq P, Rieu J, and Saw TB. 2.5D Traction Force Microscopy: Imaging three-dimensional cell forces at interfaces and biological applications. Int J Biochem Cell Biol 2023;:106432. [PMID: 37290687]
- . https://www.ncbi.nlm.nih.gov/pubmed/36103541
- Balasubramaniam L, Doostmohammadi A, Saw TB, Narayana GHNS, Mueller R, Dang T, Thomas M, Gupta S, Sonam S, Yap AS, Toyama Y, Mège R, Yeomans JM, and Ladoux B. Author Correction: Investigating the nature of active forces in tissues reveals how contractile cells can form extensile monolayers. Nat Mater 2021;. [PMID: 33750921]
- Balasubramaniam L, Doostmohammadi A, Saw TB, Narayana GHNS, Mueller R, Dang T, Thomas M, Gupta S, Sonam S, Yap AS, Toyama Y, Mège R, Yeomans JM, and Ladoux B. Investigating the nature of active forces in tissues reveals how contractile cells can form extensile monolayers. Nat Mater 2021;. [PMID: 33603188]
- Teo JL, Lim CT, Yap AS, and Saw TB. A Biologist's Guide to Traction Force Microscopy Using Polydimethylsiloxane Substrate for Two-Dimensional Cell Cultures. STAR Protoc 2020; 1(2):100098. [PMID: 33111126]
- Chen T, Saw TB, Mège R, and Ladoux B. Mechanical forces in cell monolayers. J. Cell. Sci. 2018; 131(24). [PMID: 30573527]
- Saw TB, Xi W, Ladoux B, and Lim CT. Biological Tissues as Active Nematic Liquid Crystals. Adv. Mater. Weinheim 2018;:e1802579. [PMID: 30156334]
- Saw TB, Doostmohammadi A, Nier V, Kocgozlu L, Thampi S, Toyama Y, Marcq P, Lim CT, Yeomans JM, and Ladoux B. Topological defects in epithelia govern cell death and extrusion. Nature 2017; 544(7649):212-216. [PMID: 28406198]

