Michael SheetzManagement2020-08-12T10:33:48+08:00
Michael SHEETZ

Michael SHEETZ

Founding Director and Collaborator, Mechanobiology Institute, National University of Singapore

misheetz@utmb.edu

Affiliations
Professor, Department of Biochemistry & Molecular Biology, UTMB Health

How are adherens junctions assembled?

How are adherens junctions assembled? Introduction to the Assembly of Adherens Junctions In situations where migrating cells first encounter each other to form junctions, changes in cellular morphology have been observed and correlated with [...]

By Management|Nov 30th, 2023|Categories: MBInfo, Mechanosignaling|Comments Off on How are adherens junctions assembled?

What are tight junctions?

What are tight junctions? Tight junctions, also known as Zonula Occludens, are cell-cell adhesion complexes that play a role in the organization of epithelial tissue. By forming a meshwork of membrane contacts around the [...]

By Management|Nov 30th, 2023|Categories: MBInfo, Mechanosignaling|Comments Off on What are tight junctions?

What is the role of adaptor proteins in the stabilization and function of core adherens junction components?

What is the role of adaptor proteins in the stabilization and function of core adherens junction components? Recruitment of plaque proteins to adherens junctions The difficulties in establishing a direct link between the α-catenin–β-catenin [...]

By Management|Nov 30th, 2023|Categories: MBInfo, Mechanosignaling|Comments Off on What is the role of adaptor proteins in the stabilization and function of core adherens junction components?

What is the role of cadherin and nectin recruitment in adherens junction assembly?

What is the role of cadherin and nectin recruitment in adherens junction assembly? Cadherin Recruitment Type I cadherins, also known as classical cadherins, are commonly found in adherens junctions (AJs) and desmosomes. They are [...]

By Management|Nov 30th, 2023|Categories: MBInfo, Mechanosignaling|Comments Off on What is the role of cadherin and nectin recruitment in adherens junction assembly?

Michael Sheetz

Collaborator

Research Areas

Cell migration, cell-cell and cell-substrate interaction

Research Interests

The morphology of cells, organs and whole organisms is determined by the generation of forces on the immediate environment, which is either extracellular matrix or adjacent cells. We are currently engaged in studies to understand the detailed molecular mechanisms involved in a variety of phenomena from cancer metastasis to brain function. Further, we are developing several new tools and protocols for measuring cell forces at the molecular level, which are revealing many new aspects of how cells can both generate and respond to external forces. We have an effort underway to define quantitatively the steps involved in cell adhesion to and spreading on a matrix-coated surface. Using a variety of cell lines that are missing proteins in various motility pathways, we are determining the quantitative changes in the spreading process. This will enable us to generate a detailed model of the process of spreading that will be a model for further studies of how cells differentiate, regenerate tissues or metastasize.

Biography

Hailing from Columbia University, Prof Michael Sheetz has more than 40 years’ experience in the biomedical field. Introduced to Singapore by Prof Hew Choy Leong of the National University of Singapore’s Department of Biological Sciences, Prof Sheetz was sought to lead an RCE project. This resulted in a two-year effort to organise and submit a proposal on Mechanobiology where Prof Sheetz set the theme and direction of the Mechanobiology Institute (MBI). As Founding Director of the MBI, he led the institute for 10 years and built it into a world-leading research centre in the field of mechanobiology.

Education

PhD California Institute of Technology

Recent Publications

  1. Jain K, Kishan K, Minhaj RF, Kanchanawong P, Sheetz MP, and Changede R. Immobile Integrin Signaling Transit and Relay Nodes Organize Mechanosignaling through Force-Dependent Phosphorylation in Focal Adhesions. ACS Nano 2025;. [PMID: 39760672]
  2. Lin S, Changede R, Farrugia AJ, Bershadsky AD, Sheetz MP, Prost J, and Rupprecht J. Membrane Tilt Drives Phase Separation of Adhesion Receptors. Phys Rev Lett 2024; 132(18):188402. [PMID: 38759206]
  3. Jain K, Minhaj RF, Kanchanawong P, Sheetz MP, and Changede R. Nano-clusters of ligand-activated integrins organize immobile, signalling active, nano-clusters of phosphorylated FAK required for mechanosignaling in focal adhesions. bioRxiv 2024;. [PMID: 38464288]
  4. Jain K, Pandey A, Wang H, Chung T, Nemati A, Kanchanawong P, Sheetz MP, Cai H, and Changede R. TiO2 Nano-Biopatterning Reveals Optimal Ligand Presentation for Cell-Matrix Adhesion Formation. Adv Mater 2024;:e2309284. [PMID: 38340044]
  5. Jain K, Lim KYE, Sheetz MP, Kanchanawong P, and Changede R. Intrinsic self-organization of integrin nanoclusters within focal adhesions is required for cellular mechanotransduction. bioRxiv 2023;. [PMID: 38045378]
  6. Oh D, Liu X, Sheetz MP, and Kenney LJ. Small, Dynamic Clusters of Tir-Intimin Seed Actin Polymerization. Small 2023;:e2302580. [PMID: 37649226]
  7. Qin R, Melamed S, Yang B, Saxena M, Sheetz MP, and Wolfenson H. Tumor Suppressor DAPK1 Catalyzes Adhesion Assembly on Rigid but Anoikis on Soft Matrices. Front Cell Dev Biol 2022; 10:959521. [PMID: 35927990]
  8. Jain K, Kanchanawong P, Sheetz MP, Zhou X, Cai H, and Changede R. Ligand functionalization of titanium nanopattern enables the analysis of cell-ligand interactions by super-resolution microscopy. Nat Protoc 2022;. [PMID: 35896742]
  9. Toh PJY, Lai JKH, Hermann A, Destaing O, Sheetz MP, Sudol M, and Saunders TE. Optogenetic control of YAP cellular localisation and function. EMBO Rep 2022;:e54401. [PMID: 35876586]
  10. Oh D, Chen Z, Biswas KH, Bai F, Ong HT, Sheetz MP, and Groves JT. Competition for shared downstream signaling molecules establishes indirect negative feedback between EGFR and EphA2. Biophys J 2022;. [PMID: 35430415]

Lab Members

Structural Analysis of SPI-2 needles

Nov 22nd, 2016|Comments Off on Structural Analysis of SPI-2 needles

Using cryoelectron microscopy to perform structural analysis of the macromolecular complex of the SPI-2 secretory apparatus

Silencing and Anti-Silencing in Salmonella Pathogenesis

Nov 22nd, 2016|Comments Off on Silencing and Anti-Silencing in Salmonella Pathogenesis

Characterizing the binding properties of the H-NS homologue StpA

Prof Masahiro Sokabe visiting from Nagoya University

Nov 22nd, 2016|Comments Off on Prof Masahiro Sokabe visiting from Nagoya University

Prof Masahiro Sokabe visiting from Nagoya University, 1-11 December, 2016

Porin Gene Transcription in Single Cells

Nov 18th, 2016|Comments Off on Porin Gene Transcription in Single Cells

Transcription of GFP enables us to see how expression levels change in response to osmolality

The Mechanism of Osmosensing by EnvZ and other HKs

Nov 18th, 2016|Comments Off on The Mechanism of Osmosensing by EnvZ and other HKs

Mapping conformational changes in EnvZ associated with osmotic stress

Molecular Mechanisms of Mechanotransduction

Nov 8th, 2016|Comments Off on Molecular Mechanisms of Mechanotransduction

Molecular machines sense and transduce mechanical force

Kriti Sethi

Nov 1st, 2016|Comments Off on Kriti Sethi

Research Fellow, Li Group

Persistent a-Catenin Activation

Nov 1st, 2016|Comments Off on Persistent a-Catenin Activation

Switching behavior of a-Catenin at E-cadherin adhesions

Cell Extrusion Mechanisms

Oct 20th, 2016|Comments Off on Cell Extrusion Mechanisms

Making sure to expel an unwanted cell

A Moving Story of FHL2

Oct 18th, 2016|Comments Off on A Moving Story of FHL2

How FHL2 translocates to the nucleus under low tension

2016 MBI-BPS Thematic Meeting on the Mechanobiology of Disease

Oct 9th, 2016|Comments Off on 2016 MBI-BPS Thematic Meeting on the Mechanobiology of Disease

Recent meeting brings together scientists to discuss research on the physical basis of disease

About the National University of Singapore

About NUSA leading global university centred in Asia, NUS is Singapore's flagship university, offering a global approach to education and research with a focus on Asian perspectives and expertise.

About the Mechanobiology Institute, National University of Singapore

About MBIOne of four Research Centres of Excellence at NUS, MBI is working to identify, measure and describe how the forces for motility and morphogenesis are expressed at the molecular, cellular and tissue level.
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