Jose Maria Valpuesta
Affiliations: | University of Cambridge, Cambridge, England, United Kingdom | ||
Natl. Center of Biotechnology (CSIC) |
Area:
Electron Microscopy; Single Particle AnalysisWebsite:
http://wwwuser.cnb.csic.es/~jmv/Google:
"Jose Maria Valpuesta"
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Publications
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Velasco-Carneros L, Cuéllar J, Dublang L, et al. (2023) The self-association equilibrium of DNAJA2 regulates its interaction with unfolded substrate proteins and with Hsc70. Nature Communications. 14: 5436 |
Ludlam WG, Aoba T, Cuéllar J, et al. (2019) Molecular architecture of the Bardet-Biedl syndrome protein 2-7-9 subcomplex. The Journal of Biological Chemistry |
Franco A, Arranz R, Fernández-Rivero N, et al. (2019) Structural insights into the ability of nucleoplasmin to assemble and chaperone histone octamers for DNA deposition. Scientific Reports. 9: 9487 |
Cuéllar J, Ludlam WG, Tensmeyer NC, et al. (2019) Structural and functional analysis of the role of the chaperonin CCT in mTOR complex assembly. Nature Communications. 10: 2865 |
Quintana-Gallardo L, Martín-Benito J, Marcilla M, et al. (2019) The cochaperone CHIP marks Hsp70- and Hsp90-bound substrates for degradation through a very flexible mechanism. Scientific Reports. 9: 1-16 |
Arranz R, Martín-Benito J, Valpuesta JM. (2018) Structure and Function of the Cochaperone Prefoldin. Advances in Experimental Medicine and Biology. 1106: 119-131 |
Fernández-Fernández MR, Valpuesta JM. (2018) Hsp70 chaperone: a master player in protein homeostasis. F1000research. 7: 1497 |
Morita K, Yamamoto YY, Hori A, et al. (2018) Expression, Functional Characterization, and Preliminary Crystallization of the Cochaperone Prefoldin from the Thermophilic Fungus . International Journal of Molecular Sciences. 19 |
Pouchucq L, Lobos-Ruiz P, Araya G, et al. (2018) The chaperonin CCT promotes the formation of fibrillar aggregates of γ-tubulin. Biochimica Et Biophysica Acta |
Cuellar J, Valpuesta JM, Wittinghofer A, et al. (2017) Domain topology of human Rasal. Biological Chemistry |