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Jagpreet singh nanda
Jagpreet singh nanda
Project scientist (Cedars Sinai Medical Center)
Verified email at cshs.org
Title
Cited by
Cited by
Year
Topical delivery of protein and peptide using novel cell penetrating peptide IMT-P8
A Gautam, JS Nanda, JS Samuel, M Kumari, P Priyanka, G Bedi, SK Nath, ...
Scientific reports 6 (1), 26278, 2016
752016
Prioritization of anticancer drugs against a cancer using genomic features of cancer cells: A step towards personalized medicine
S Gupta, K Chaudhary, R Kumar, A Gautam, JS Nanda, SK Dhanda, ...
Scientific reports 6 (1), 23857, 2016
712016
dbEM: A database of epigenetic modifiers curated from cancerous and normal genomes
J Singh Nanda, R Kumar, GPS Raghava
Scientific reports 6 (1), 19340, 2016
642016
Role of Swi6/HP1 self-association-mediated recruitment of Clr4/Suv39 in establishment and maintenance of heterochromatin in fission yeast
S Haldar, A Saini, JS Nanda, S Saini, J Singh
Journal of biological chemistry 286 (11), 9308-9320, 2011
562011
Ablation of RNA interference and retrotransposons accompany acquisition and evolution of transposases to heterochromatin protein CENPB
U Upadhyay, S Srivastava, I Khatri, JS Nanda, S Subramanian, A Arora, ...
Molecular biology of the cell 28 (8), 1132-1146, 2017
232017
Identification of Genes Required for Enzalutamide Resistance in Castration-Resistant Prostate Cancer Cells In Vitro
SE Kohrt, WN Awadallah, RA Phillips III, TC Case, R Jin, JS Nanda, X Yu, ...
Molecular cancer therapeutics 20 (2), 398-409, 2021
192021
Increased nuclear factor I/B expression in prostate cancer correlates with AR expression
JS Nanda, WN Awadallah, SE Kohrt, P Popovics, JMM Cates, ...
The Prostate 80 (13), 1058-1070, 2020
92020
Role of Cdc23/Mcm10 in generating the ribonucleotide imprint at the mat1 locus in fission yeast
B Singh, KK Bisht, U Upadhyay, AC Kushwaha, JS Nanda, S Srivastava, ...
Nucleic acids research 47 (7), 3422-3433, 2019
92019
Phenotypic plasticity-alternate transcriptional programs driving treatment resistant prostate cancer
JS Nanda, P Koganti, G Perri, L Ellis
Critical Reviews™ in Oncogenesis 27 (1), 2022
32022
An RNAi-independent role of AP1-like stress response factor Pap1 in centromere and mating-type silencing in Schizosaccaromyces pombe
A Kumar, JS Nanda, S Saini, J Singh
Journal of Biosciences 46, 1-14, 2021
22021
Nuclear factor I/B increases in prostate cancer to support androgen receptor activation
JS Nanda, WN Awadallah, SE Kohrt, P Popovics, JM Cates, J Mirosevich, ...
BioRxiv: Jun 27, 2019
22019
Cdc23/Mcm10 Primase Generates the Lagging Strand-Specific Ribonucleotide Imprint in Fission Yeast
B Singh, KK Bisht, U Upadhyay, AC Kushwaha, JS Nanda, S Srivastava, ...
bioRxiv, 303180, 2018
12018
MYBL2 drives prostate cancer plasticity and identifies CDK2 as a therapeutic vulnerability in RB1-loss and neuroendocrine prostate cancer
B German, JN Singh, MAS Fonseca, DL Burkhart, A Sheahan, H Bergom, ...
bioRxiv, 2024
2024
MYBL2 drives prostate cancer plasticity and identifies CDK2 as a therapeutic vulnerability in RB1-loss and neuroendocrine prostate cancer
LE Beatriz German, Jagpreet Singh Nanda, Marcos Ads Fonseca, Deborah L ...
biorxiv, 2024
2024
Loss of tristetraprolin activates NF-κB induced phenotypic plasticity and primes transition to lethal prostate cancer
KL Morel, AA Hamid, BG Falcón, JS Nanda, S Linder, AM Bergman, ...
bioRxiv, 2022.08. 05.500896, 2022
2022
IL1B loss is associated with increased AR activity in castration-resistant prostate cancer
WN Awadallah, JS Nanda, SE Kohrt, MM Grabowska
bioRxiv, 2021.08. 31.458406, 2021
2021
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