Payel Chatterjee
Affiliations: | NCBS, Bangalore, India, Bengaluru, Karnataka, India |
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Parents
Sign in to add mentorAlex Almasan | grad student | Kent State University, FRCRC (Cell Biology Tree) | |
Sanjay Sane | grad student |
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Publications
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Chatterjee P, Mohan U, Sane SP. (2022) Small-amplitude head oscillations result from a multimodal head stabilization reflex in hawkmoths. Biology Letters. 18: 20220199 |
Chatterjee P, Prusty AD, Mohan U, et al. (2022) Integration of visual and antennal mechanosensory feedback during head stabilization in hawkmoths. Elife. 11 |
De Sarkar N, Dasgupta S, Chatterjee P, et al. (2021) Genomic attributes of homology-directed DNA repair deficiency in metastatic prostate cancer. Jci Insight. 6 |
Chatterjee P, Mohan U, Krishnan A, et al. (2020) Evolutionary constraints on flicker fusion frequency in Lepidoptera. Journal of Comparative Physiology. a, Neuroethology, Sensory, Neural, and Behavioral Physiology |
Nyquist MD, Corella A, Coleman I, et al. (2020) Combined TP53 and RB1 Loss Promotes Prostate Cancer Resistance to a Spectrum of Therapeutics and Confers Vulnerability to Replication Stress. Cell Reports. 31: 107669 |
Chatterjee P, Schweizer MT, Lucas JM, et al. (2019) Supraphysiological androgens suppress prostate cancer growth through androgen receptor-mediated DNA damage. The Journal of Clinical Investigation. 130 |
Lam HM, Nguyen HM, Labrecque MP, et al. (2019) Durable Response of Enzalutamide-resistant Prostate Cancer to Supraphysiological Testosterone Is Associated with a Multifaceted Growth Suppression and Impaired DNA Damage Response Transcriptomic Program in Patient-derived Xenografts. European Urology |
Sharma A, Alswillah T, Singh K, et al. (2018) USP14 regulates DNA damage repair by targeting RNF168-dependent ubiquitination. Autophagy |
Chatterjee P, Lucas JM, Nyquist MD, et al. (2018) Abstract B049: DNA damage echoes are key to prostate cancer susceptibility to supraphysiologic androgen levels Cancer Research. 78 |
Chatterjee P, Nelson P. (2017) Abstract A38: Targeting Microenvironment Damage Responses via PARP inhibition to Enhance Prostate Cancer Therapy Molecular Cancer Research. 15 |