Hanspeter Niederstrasser, Ph.D.

Affiliations: 
University of California, Berkeley, Berkeley, CA 
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"Hanspeter Niederstrasser"
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Parents

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Eva Nogales grad student 2004 UC Berkeley
 (XMCAK is a kinesin with depolymerization activity mediated by unique microtubule interacting domains.)
John A. Cooper post-doc Washington University School of Medicine
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Publications

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White K, Esparza M, Liang J, et al. (2021) Aryl Sulfonamide Inhibits Entry and Replication of Diverse Influenza Viruses via the Hemagglutinin Protein. Journal of Medicinal Chemistry
Lawong A, Gahalawat S, Okombo J, et al. (2021) Novel Antimalarial Tetrazoles and Amides Active against the Hemoglobin Degradation Pathway in . Journal of Medicinal Chemistry
Layeghi-Ghalehsoukhteh S, Pal Choudhuri S, Ocal O, et al. (2020) Concerted cell and in vivo screen for pancreatic ductal adenocarcinoma (PDA) chemotherapeutics. Scientific Reports. 10: 20662
Ullah I, Gahalawat S, Booshehri LM, et al. (2020) An Antiparasitic Compound from the Medicines for Malaria Venture Pathogen Box Promotes Tubulin Polymerization. Acs Infectious Diseases
Shen Q, Niederstrasser H, Barakat R, et al. (2020) Single-cell-level screening method for migratory cancer cells and its potential feasibility in high-throughput manner. Biofabrication
Ramadurgum P, Woodard DR, Daniel S, et al. (2020) Simultaneous Control of Endogenous and User-Defined Genetic Pathways Using Unique ecDHFR Pharmacological Chaperones. Cell Chemical Biology
Esparza M, Mor A, Niederstrasser H, et al. (2020) Chemical intervention of influenza virus mRNA nuclear export. Plos Pathogens. 16: e1008407
Wang C, Niederstrasser H, Douglas PM, et al. (2018) Author Correction: Small-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan. Nature Communications. 9: 2050
Wang C, Niederstrasser H, Douglas PM, et al. (2017) Small-molecule TFEB pathway agonists that ameliorate metabolic syndrome in mice and extend C. elegans lifespan. Nature Communications. 8: 2270
Zhou H, Morales MG, Hashimoto H, et al. (2017) ZNF281 enhances cardiac reprogramming by modulating cardiac and inflammatory gene expression. Genes & Development. 31: 1770-1783
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