Search Results - "Henis, Yoav"
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Phase separation of TAZ compartmentalizes the transcription machinery to promote gene expression
Published in Nature cell biology (01-04-2020)“…TAZ promotes growth, development and tumorigenesis by regulating the expression of target genes. However, the manner in which TAZ orchestrates the…”
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2
Formation of self-organizing functionally distinct Rho of plants domains involves a reduced mobile population
Published in Plant physiology (Bethesda) (04-12-2021)“…Rho family proteins are central to the regulation of cell polarity in eukaryotes. Rho of Plants-Guanyl nucleotide Exchange Factor (ROPGEF) can form…”
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3
Actomyosin-generated tension controls the molecular kinetics of focal adhesions
Published in Journal of cell science (01-05-2011)“…Focal adhesions (FAs) have key roles in the interaction of cells with the extracellular matrix (ECM) and in adhesion-mediated signaling. These dynamic,…”
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4
Competition between type I activin and BMP receptors for binding to ACVR2A regulates signaling to distinct Smad pathways
Published in BMC biology (18-02-2022)“…Activins and bone morphogenetic proteins (BMPs) play critical, sometimes opposing roles, in multiple physiological and pathological processes and diseases…”
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5
Complex Formation Among TGF-β Receptors in Live Cell Membranes Measured by Patch-FRAP
Published in Methods in molecular biology (Clifton, N.J.) (2022)“…Signaling by receptors from the transforming growth factor-β (TGF-β) superfamily plays critical roles in multiple physiological and pathological processes…”
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Zeb2 regulates the balance between retinal interneurons and Müller glia by inhibition of BMP–Smad signaling
Published in Developmental biology (01-12-2020)“…The interplay between signaling molecules and transcription factors during retinal development is key to controlling the correct number of retinal cell types…”
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7
Oligomeric interactions of TGF-β and BMP receptors
Published in FEBS letters (04-07-2012)“…Transforming growth factor-β (TGF-β) and bone morphogenetic protein (BMP) cytokines participate in a multiplicity of ways in the regulation of numerous…”
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8
Cholesterol depletion enhances TGF-β Smad signaling by increasing c-Jun expression through a PKR-dependent mechanism
Published in Molecular biology of the cell (01-10-2018)“…Transforming growth factor-β (TGF-β) plays critical roles in numerous physiological and pathological responses. Cholesterol, a major plasma membrane component,…”
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9
ALK1 regulates the internalization of endoglin and the type III TGF-β receptor
Published in Molecular biology of the cell (01-04-2021)“…Complex formation and endocytosis of transforming growth factor-β (TGF-β) receptors play important roles in signaling. However, their interdependence remained…”
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10
Spatial segregation of BMP/Smad signaling affects osteoblast differentiation in C2C12 cells
Published in PloS one (05-10-2011)“…Bone morphogenetic proteins (BMPs) are involved in a plethora of cellular processes in embryonic development and adult tissue homeostasis. Signaling…”
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11
Differential effect of actomyosin relaxation on the dynamic properties of focal adhesion proteins
Published in PloS one (09-09-2013)“…Treatment of cultured cells with inhibitors of actomyosin contractility induces rapid deterioration of stress fibers, and disassembly of the associated focal…”
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12
A role for the juxtamembrane cytoplasm in the molecular dynamics of focal adhesions
Published in PloS one (28-01-2009)“…Focal adhesions (FAs) are specialized membrane-associated multi-protein complexes that link the cell to the extracellular matrix and play crucial roles in…”
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13
Regulation of TGF-β receptor hetero-oligomerization and signaling by endoglin
Published in Molecular biology of the cell (01-09-2015)“…Complex formation among transforming growth factor-β (TGF-β) receptors and its modulation by coreceptors represent an important level of regulation for TGF-β…”
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14
Homomeric and heteromeric complexes among TGF-β and BMP receptors and their roles in signaling
Published in Cellular signalling (01-09-2011)“…Transforming growth factor-β (TGF-β) ligands and bone morphogenetic proteins (BMPs) play myriad roles in many biological processes and diseases. Their…”
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15
TβRIII independently binds type I and type II TGF-β receptors to inhibit TGF-β signaling
Published in Molecular biology of the cell (01-10-2015)“…Transforming growth factor-β (TGF-β) receptor oligomerization has important roles in signaling. Complex formation among type I and type II (TβRI and TβRII)…”
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16
Noncatalytic Bruton's tyrosine kinase activates PLCγ2 variants mediating ibrutinib resistance in human chronic lymphocytic leukemia cells
Published in The Journal of biological chemistry (24-04-2020)“…Treatment of patients with chronic lymphocytic leukemia (CLL) with inhibitors of Bruton's tyrosine kinase (BTK), such as ibrutinib, is limited by primary or…”
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17
The role of palmitoylation in regulating Ras localization and function
Published in Biochemical Society transactions (01-02-2013)“…Ras GTPases are important regulators of pathways controlling proliferation, differentiation and transformation. Three ubiquitously expressed almost identical…”
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The residue at position 5 of the N-terminal region of Src and Fyn modulates their myristoylation, palmitoylation, and membrane interactions
Published in Molecular biology of the cell (01-12-2016)“…The interactions of Src family kinases (SFKs) with the plasma membrane are crucial for their activity. They depend on their fatty-acylated N-termini,…”
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19
TGF-β triggers rapid fibrillogenesis via a novel TβRII-dependent fibronectin-trafficking mechanism
Published in Molecular biology of the cell (01-05-2017)“…Fibronectin (FN) is a critical regulator of extracellular matrix (ECM) remodeling through its availability and stepwise polymerization for fibrillogenesis…”
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20
Different Routes of Bone Morphogenic Protein (BMP) Receptor Endocytosis Influence BMP Signaling
Published in Molecular and Cellular Biology (01-10-2006)“…Article Usage Stats Services MCB Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley…”
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