Gregory M. Alushin, Ph.D.

Biophysics University of California, Berkeley, Berkeley, CA 
"Gregory Alushin"
Mean distance: 10.56


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Mark L. Mayer grad student Rockefeller (Neurotree)
Eva Nogales grad student 2012 UC Berkeley
 (Molecular Mechanisms of Kinetochore-Microtubule Attachment Via the Ndc80 Complex.)
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Kim LY, Thompson PM, Lee HT, et al. (2016) The Structural Basis of Actin Organization by Vinculin and Metavinculin. Journal of Molecular Biology. 428: 10-25
Zhang R, Alushin GM, Brown A, et al. (2015) Mechanistic Origin of Microtubule Dynamic Instability and Its Modulation by EB Proteins. Cell
Alushin GM, Lander GC, Kellogg EH, et al. (2014) High-resolution microtubule structures reveal the structural transitions in αβ-tubulin upon GTP hydrolysis. Cell. 157: 1117-29
Howes SC, Alushin GM, Shida T, et al. (2014) Effects of tubulin acetylation and tubulin acetyltransferase binding on microtubule structure. Molecular Biology of the Cell. 25: 257-66
Musinipally V, Howes S, Alushin GM, et al. (2013) The microtubule binding properties of CENP-E's C-terminus and CENP-F. Journal of Molecular Biology. 425: 4427-41
Lampert F, Mieck C, Alushin GM, et al. (2013) Molecular requirements for the formation of a kinetochore-microtubule interface by Dam1 and Ndc80 complexes. The Journal of Cell Biology. 200: 21-30
Alushin GM, Musinipally V, Matson D, et al. (2012) Multimodal microtubule binding by the Ndc80 kinetochore complex. Nature Structural & Molecular Biology. 19: 1161-7
Paul MF, Alushin GM, Barros MH, et al. (2012) The putative GTPase encoded by MTG3 functions in a novel pathway for regulating assembly of the small subunit of yeast mitochondrial ribosomes Journal of Biological Chemistry. 287: 24346-24355
Nogales E, Alushin G. (2012) Tubulin and microtubule structure: Mechanistic insights into dynamic instability and its biological relevance Comprehensive Biophysics. 4: 72-92
Alushin G, Nogales E. (2011) Visualizing kinetochore architecture. Current Opinion in Structural Biology. 21: 661-9
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