Stephen C. Harrison
Affiliations: | Biological Chemistry and Molecular Pharmacology | Harvard University, Cambridge, MA, United States |
Area:
structural cell biologyWebsite:
http://crystal.harvard.edu/harrison.htmlGoogle:
"Stephen C. Harrison"Bio:
http://www.nasonline.org/member-directory/members/59417.html
http://www.fas.harvard.edu/~biophys/Stephen_C_Harrison.htm
Mean distance: 7.42
Cross-listing: Crystallography Tree
Parents
Sign in to add mentorDonald L. D. Caspar | grad student | 1968 | Harvard | |
(The structure of tomato bushy stunt virus) |
Children
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Publications
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Stewart MG, Carrier JS, Zahm JA, et al. (2025) A coordinated kinase and phosphatase network regulates Stu2 recruitment to yeast kinetochores. The Journal of Cell Biology. 224 |
Stewart MG, Carrier JS, Zahm JA, et al. (2024) A coordinated kinase and phosphatase network regulates Stu2 recruitment to yeast kinetochores. Biorxiv : the Preprint Server For Biology |
Zahm JA, Harrison SC. (2024) A communication hub for phosphoregulation of kinetochore-microtubule attachment. Current Biology : Cb |
Zahm JA, Jenni S, Harrison SC. (2023) Structure of the Ndc80 complex and its interactions at the yeast kinetochore-microtubule interface. Open Biology. 13: 220378 |
Kuraoka M, Curtis NC, Watanabe A, et al. (2022) Infant Antibody Repertoires during the First Two Years of Influenza Vaccination. Mbio. e0254622 |
Jenni S, Li Z, Wang Y, et al. (2022) Rotavirus VP4 Epitope of a Broadly Neutralizing Human Antibody Defined by Its Structure Bound with an Attenuated-Strain Virion. Journal of Virology. e0062722 |
Kuraoka M, Yeh CH, Bajic G, et al. (2022) Recall of B cell memory depends on relative locations of prime and boost immunization. Science Immunology. 7: eabn5311 |
MacDonald EA, Frey G, Namchuk MN, et al. (2021) Recognition of Divergent Viral Substrates by the SARS-CoV-2 Main Protease. Acs Infectious Diseases |
Tong P, Gautam A, Windsor IW, et al. (2021) Memory B cell repertoire for recognition of evolving SARS-CoV-2 spike. Cell |
Quan Y, Hinshaw SM, Wang PC, et al. (2021) Ctf3/CENP-I provides a docking site for the desumoylase Ulp2 at the kinetochore. The Journal of Cell Biology. 220 |