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Timothy A. Springer

Affiliations: 
Biological Chemistry & Molecular Pharmacology Harvard Medical School, Boston, MA, United States 
Area:
Immunology
Website:
http://www.fas.harvard.edu/~biophys/Timothy_Springer.htm
Google:
"Timothy A. Springer"
Bio:

http://www.nasonline.org/member-directory/members/3001708.html
https://bcmp.med.harvard.edu/faculty/springer
http://www.idi.harvard.edu/investigators_research/investigator/springer_lab/
http://labs.idi.harvard.edu/springer/pages/careernarrative
http://www.dfhcc.harvard.edu/membership/profile/member/1086/0/

Mean distance: 16.7 (cluster 11)
 
SNBCP
Cross-listing: Chemistry Tree

Parents

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Jack L. Strominger grad student 1976 Harvard (Chemistry Tree)
 (Detergent soluble products of HLA)
César Milstein post-doc 1976-1977 MRC-LMB (Chemistry Tree)

Children

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Michael S. Diamond grad student
Jongseong Kim grad student Harvard Medical School
Michael L. Dustin grad student 1984- Harvard Medical School (Microtree)
Mark A. Blenner post-doc Harvard Medical School (E-Tree)
Joon Lee post-doc 2023- (Chemistry Tree)
Tsan Sam Xiao post-doc 2001-2006 Harvard Medical School (Chemistry Tree)
Xing CHEN post-doc 2007-2010 Harvard Medical School (Chemistry Tree)
Mehmet Sen post-doc 2007-2015 Harvard Medical School - Boston Children's Hospital (Chemistry Tree)

Collaborators

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Joseph Mathew Kalappurakkal collaborator (Cell Biology Tree)
BETA: Related publications

Publications

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Hao Y, Yan J, Fraser C, et al. (2024) Synthetic integrin antibodies discovered by yeast display reveal αV subunit pairing preferences with β subunits. Mabs. 16: 2365891
Li J, Jo MH, Yan J, et al. (2024) Ligand binding initiates single-molecule integrin conformational activation. Cell
Jo MH, Li J, Jaumouillé V, et al. (2022) Single-molecule characterization of subtype-specific β1 integrin mechanics. Nature Communications. 13: 7471
Jensen RK, Bajic G, Sen M, et al. (2021) Complement Receptor 3 Forms a Compact High-Affinity Complex with iC3b. Journal of Immunology (Baltimore, Md. : 1950)
Klug D, Goellner S, Kehrer J, et al. (2020) Evolutionarily distant I domains can functionally replace the essential ligand-binding domain of TRAP. Elife. 9
Klug D, Goellner S, Kehrer J, et al. (2020) Author response: Evolutionarily distant I domains can functionally replace the essential ligand-binding domain of Plasmodium TRAP Elife
Jo MH, Li J, Springer TA, et al. (2020) Integrin-Dependent Difference in Cell Adhesion and Force Exertion Biophysical Journal. 118: 96a
Wang J, Su Y, Iacob RE, et al. (2019) General structural features that regulate integrin affinity revealed by atypical αVβ8. Nature Communications. 10: 5481
Buß M, Tegtmeyer N, Schnieder J, et al. (2019) Specific high affinity interaction of Helicobacter pylori CagL with integrin α β promotes type IV secretion of CagA into human cells. The Febs Journal
Jiang Y, Fu H, Springer TA, et al. (2019) Electrostatic Steering Enables Flow-Activated von Willebrand Factor to Bind Platelet Glycoprotein, Revealed by Single-Molecule Stretching and Imaging. Journal of Molecular Biology
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