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Mesenchymal stem cell exosomes enhance the development of hair follicle to ameliorate androgenetic alopecia. [PDF]
Fu Y+7 more
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p21-Activated Kinase 1 (Pak1) as an Element in Functional and Dysfunctional Interplay Among the Myocardium, Adipose Tissue, and Pancreatic Beta Cells. [PDF]
Rosas PC, Solaro RJ.
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PLGA-PEG Nanoparticles Loaded with Cdc42 Inhibitor for Colorectal Cancer Targeted Therapy. [PDF]
Kadyr S+8 more
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Cdc42EP3-bound septin scaffolds promote actin polymerization. [PDF]
Tomasso MR+8 more
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NMR assignment of Cdc42(T35A), an active Switch I mutant of Cdc42
Biomolecular NMR Assignments, 2007Cdc42(T35A) is an active construct of Cdc42, a Ras GTPase involved in signal transduction, containing a single-point mutation in an important effector-binding region. We determined the backbone and side chain resonance assignments of (13)C,(15)N-labelled Cdc42(T35A) from E. coli.
Adams, Paul D., Oswald, Robert E.
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Cdc42: Role in Cancer Management
Chemical Biology & Drug Design, 2015Contribution of Cdc42, a member of Rho family, has been characterized for the beginning of variety of cellular responses including cellular transformation, cell division, cell invasion, migration, invadopodia formation, enzyme activity, filopodia formation, and cell polarity in cells. Deregulation of Cdc42 can alter the normal functioning of the cells,
Muhammad Imran Qadir+2 more
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Secramine inhibits Cdc42-dependent functions in cells and Cdc42 activation in vitro
Nature Chemical Biology, 2005Inspired by the usefulness of small molecules to study membrane traffic, we used high-throughput synthesis and phenotypic screening to discover secramine, a molecule that inhibits membrane traffic out of the Golgi apparatus by an unknown mechanism. We report here that secramine inhibits activation of the Rho GTPase Cdc42, a protein involved in membrane
Enrique Rodriguez-Boulan+10 more
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Regulation of anoikis by Cdc42 and Rac1
Experimental Cell Research, 2004Ras family small GTPases play a critical role in malignant transformation, and Rho subfamily members contribute significantly to this process. Anchorage-independent growth and the ability to avoid detachment-induced apoptosis (anoikis) are hallmarks of transformed epithelial cells.
Marc Symons+2 more
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