about
Structural determinants of cadherin-23 function in hearing and deafnessStructure of a force-conveying cadherin bond essential for inner-ear mechanotransductionStructural and Biochemical Consequences of Disease-Causing Mutations in the Ankyrin Repeat Domain of the Human TRPV4 ChannelConstant electric field simulations of the membrane potential illustrated with simple systems.A structural mechanism for MscS gating in lipid bilayers.Three-dimensional architecture of membrane-embedded MscS in the closed conformationAn elastic element in the protocadherin-15 tip link of the inner ear.Discovery through the computational microscope.Protocol for sortase-mediated construction of DNA-protein hybrids and functional nanostructures.Molecular mechanisms of cellular mechanics.Noddy, a mouse harboring a missense mutation in protocadherin-15, reveals the impact of disrupting a critical interaction site between tip-link cadherins in inner ear hair cells.Molecular dynamics simulations of membrane channels and transportersStructural determinants of adhesion by Protocadherin-19 and implications for its role in epilepsy.Using thermal scanning assays to test protein-protein interactions of inner-ear cadherins.Beyond Cell-Cell Adhesion: Sensational Cadherins for Hearing and Balance.Tuning Inner-Ear Tip-Link Affinity Through Alternatively Spliced Variants of Protocadherin-15.A Partial Calcium-Free Linker Confers Flexibility to Inner-Ear Protocadherin-15.Active Site Flexibility as a Hallmark for Efficient PET Degradation by I. sakaiensis PETase.The dispersal of circumstellar discs: the role of the ultraviolet switchBiochemical Studies Provide Insights into the Necessity for MultipleArabidopsis thalianaProtein-Only RNase P IsoenzymesIn search of the hair-cell gating spring elastic properties of ankyrin and cadherin repeatsA Mechanically Weak Extracellular Membrane-Adjacent Domain Induces Dimerization of Protocadherin-15Zooming in on Cadherin-23: Structural Diversity and Potential Mechanisms of Inherited DeafnessIdentification of an adhesive interface for the non-clustered δ1 protocadherin-1 involved in respiratory diseasesTMC1 Forms the Pore of Mechanosensory Transduction Channels in Vertebrate Inner Ear Hair CellsMultidomain Convergence of Argonaute during RISC Assembly Correlates with the Formation of Internal Water ClustersInteraction specificity of clustered protocadherins inferred from sequence covariation and structural analysis
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description
onderzoeker
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researcher
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հետազոտող
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name
Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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Marcos Sotomayor
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P106
P21
P31
P496
0000-0002-3333-1805