Ronen Zaidel-BarManagement2019-01-11T09:48:41+08:00
Michael SHEETZ

Ronen ZAIDEL-BAR

Department of Cell and Developmental Biology, Sackler Faculty of Medicine, Tel-Aviv University, Israel

zaidelbar@tauex.tau.ac.il

Laboratory website
Zaidel-Bar Cell Adhesion Lab

What is cell migration?

What is cell migration? Cell migration is the directed movement of a single cell or a group of cells in response to chemical and/or mechanical signals. It is a fundamental cellular process that occurs [...]

By Management|Nov 30th, 2023|Categories: Development, MBInfo|Comments Off on What is cell migration?

What is cell polarity?

What is cell polarity? Cell polarity refers to the intrinsic asymmetry observed in cells, either in their shape, structure, or organization of cellular components. Most epithelial cells, migrating cells and developing cells require some [...]

By Management|Nov 30th, 2023|Categories: Development, MBInfo|Comments Off on What is cell polarity?

What are epithelial tubes?

What are epithelial tubes? Tubulogenesis, or the formation of tubes, is one of the fundamental morphogenetic events taking place during development. Several major organs, such as the respiratory, circulatory, and secretory systems, are constituted [...]

By Management|Nov 30th, 2023|Categories: Development, MBInfo|Comments Off on What are epithelial tubes?

What is the cellular origin of hematopoietic stem cells?

What is the cellular origin of hematopoietic stem cells? Based on findings from a large number of anatomical, biochemical, and genetic studies carried out over the years, three major theories have been put forth [...]

By Management|Nov 30th, 2023|Categories: Development, MBInfo|Comments Off on What is the cellular origin of hematopoietic stem cells?

How is hematopoiesis regulated by mechanics?

How is hematopoiesis regulated by mechanics? Once blood circulation is established during the earliest stages of hematopoiesis, the pulsatile nature of blood flow within the aorta generates a range of biomechanical forces, such as [...]

By Management|Nov 30th, 2023|Categories: Development, MBInfo|Comments Off on How is hematopoiesis regulated by mechanics?

What is hematopoiesis?

What is hematopoiesis? The hematopoietic system, which comprises all the cellular components of the blood, is one of the earliest organ systems to evolve during embryo development. Hematopoietic stem cells (HSCs), which are rare [...]

By Management|Nov 30th, 2023|Categories: Development, MBInfo|Comments Off on What is hematopoiesis?

Ronen Zaidel-Bar

Visiting Faculty

Currently Visting

6-12 Nov 2018
Office: T-Lab, Level 5

Research Areas

Cell-cell and cell-matrix adhesion, Regulation of actomyosin contractility and dynamics, C. elegans development, mechanics and molecular mechanisms of morphogenesis

Research Interests

  1. How do specific cytoskeletal proteins contribute to the organization and function of cell adhesion and actomyosin structures?
  2. How are signals processed within the “adhesome” and “contractome” to arrive at the appropriate cytoskeletal arrangement for a given cell state?
  3. How do adhesion sites and the cytoskeleton sense and respond to external mechanical forces?

Biography

Dr Zaidel-Bar obtained his Ph.D. working with Prof Benny Geiger (Weizmann Institute of Science) on the role of force in regulating cell-matrix adhesions. Their work first focused on single proteins and evolved to encompass the entire adhesome network. In his Postdoctoral training with Prof Jeff Hardin (University of Wisconsin – Madison) Dr Zaidel-Bar switched from studying cells in culture to employing the genetic model organism C. elegans for the study of cell-cell adhesions during development. Dr Zaidel-Bar was attracted to Singapore by the opening of MBI and was awarded the Singapore National Research Foundation Fellowship for promising young investigators.

Education

PhD Weizmann Institute of Science

Recent Publications

  1. Bertocchi C, Alegría JJ, Vásquez-Sepúlveda S, Ibanez-Prat R, Srinivasan A, Arrano-Valenzuela I, Castro-Pereira B, Soto-Montandon C, Trujillo-Espergel A, Montenegro-Rojas I, Deguchi S, Owen GI, Kanchanawong P, Cerda M, Motta G, Zaidel-Bar R, and Ravasio A. Systematic AI-assisted screening of the cadhesome to map epithelial monolayer mechanics. Cell Commun Signal 2026;. [PMID: 42399739]
  2. Ray S, Agarwal P, Nitzan A, Nédélec F, and Zaidel-Bar R. Actin capping protein regulates actomyosin contractility to maintain germline architecture in C. elegans. Development 2023;. [PMID: 36897576]
  3. Avivi Kela S, Sethi K, Tan PY, Suresh D, Ong HT, Castaneda PG, Amin MR, Laviv T, Cram EJ, Faix J, and Zaidel-Bar R. Tension-dependent RHGF-1 recruitment to stress fibers drives robust spermathecal tissue contraction. J Cell Biol 2022; 222(2). [PMID: 36574264]
  4. Chen Z, Oh D, Biswas KH, Zaidel-Bar R, and Groves JT. Probing the effect of clustering on EphA2 receptor signaling efficiency by subcellular control of ligand-receptor mobility. Elife 2021; 10. [PMID: 34414885]
  5. Hu S, Grobe H, Guo Z, Wang Y, Doss BL, Pan M, Ladoux B, Bershadsky AD, and Zaidel-Bar R. Reciprocal regulation of actomyosin organization and contractility in non-muscle cells by tropomyosins and alpha-actinins. Mol. Biol. Cell 2019;:mbcE19020082. [PMID: 31216217]
  6. Desai SK, Padmanabhan A, Harshe S, Zaidel-Bar R, and Kenney LJ. Salmonella biofilms program innate immunity for persistence in Caenorhabditis elegans. Proc. Natl. Acad. Sci. U.S.A. 2019;. [PMID: 31160462]
  7. Bouffard J, Cecchetelli AD, Clifford C, Sethi K, Zaidel-Bar R, and Cram EJ. The RhoGAP SPV-1 regulates calcium signaling to control the contractility of the C. elegans spermatheca during embryo transits. Mol. Biol. Cell 2019;:mbcE18100633. [PMID: 30726159]
  8. Priti A, Ong HT, Toyama Y, Padmanabhan A, Dasgupta S, Krajnc M, and Zaidel-Bar R. Syncytial germline architecture is actively maintained by contraction of an internal actomyosin corset. Nat Commun 2018; 9(1):4694. [PMID: 30410005]
  9. Agarwal P, and Zaidel-Bar R. Principles of Actomyosin Regulation In Vivo. Trends Cell Biol. 2018;. [PMID: 30385150]
  10. Chen Z, Oh D, Biswas KH, Yu C, Zaidel-Bar R, and Groves JT. Spatially modulated ephrinA1:EphA2 signaling increases local contractility and global focal adhesion dynamics to promote cell motility. Proc. Natl. Acad. Sci. U.S.A. 2018;. [PMID: 29866846]

Lab Members

Lipid-mediated DNA repair

Feb 9th, 2018|Comments Off on Lipid-mediated DNA repair

How phosphoinositides regulate ATR recruitment

Cell arrangements under confined geometries

Feb 8th, 2018|Comments Off on Cell arrangements under confined geometries

How epithelial cells arrange in curved environments

A.I. in the fight against cancer

Feb 1st, 2018|Comments Off on A.I. in the fight against cancer

Training machines to recognize cancer cells

A link to bacterial gene silencing

Jan 26th, 2018|Comments Off on A link to bacterial gene silencing

The charged H-NS linker is key to promoting DNA binding

Wang Wei

Jan 23rd, 2018|Comments Off on Wang Wei

Research Fellow, Kanchanawong Group

Wang Hsi Chi Samuel

Jan 23rd, 2018|Comments Off on Wang Hsi Chi Samuel

Alumni, Toyama Group

Prabhat Tiwari

Jan 23rd, 2018|Comments Off on Prabhat Tiwari

Alumni, Saunders Group

Lee Yaelim

Jan 23rd, 2018|Comments Off on Lee Yaelim

Research Fellow, Shivashankar Group, Li Group

Guttula Durgarao

Jan 23rd, 2018|Comments Off on Guttula Durgarao

Alumni, Yan Jie Group

Ajay Sanjay Tijore

Jan 23rd, 2018|Comments Off on Ajay Sanjay Tijore

Alumni, Low Group

Aditya Arora

Jan 23rd, 2018|Comments Off on Aditya Arora

Research Fellow, Viasnoff Group

Michele Crestani

Jan 23rd, 2018|Comments Off on Michele Crestani

Alumni, Shivashankar Group

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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