Viswanathan Palanisamy
Viswanathan Palanisamy
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Nanostructural and transcriptomic analyses of human saliva derived exosomes
V Palanisamy, S Sharma, A Deshpande, H Zhou, J Gimzewski, DT Wong
PloS one 5 (1), e8577, 2010
Structural-mechanical characterization of nanoparticle exosomes in human saliva, using correlative AFM, FESEM, and force spectroscopy
S Sharma, HI Rasool, V Palanisamy, C Mathisen, M Schmidt, DT Wong, ...
ACS nano 4 (4), 1921-1926, 2010
A regulated PNUTS mRNA to lncRNA splice switch mediates EMT and tumour progression
S Grelet, LA Link, B Howley, C Obellianne, V Palanisamy, VK Gangaraju, ...
Nature cell biology 19 (9), 1105-1115, 2017
Horizontal transfer of RNAs: exosomes as mediators of intercellular communication
S Ramachandran, V Palanisamy
Wiley interdisciplinary reviews: RNA 3 (2), 286-293, 2012
Quantitative nanostructural and single-molecule force spectroscopy biomolecular analysis of human-saliva-derived exosomes
S Sharma, BM Gillespie, V Palanisamy, JK Gimzewski
Langmuir 27 (23), 14394-14400, 2011
Control of cytokine mRNA expression by RNA-binding proteins and microRNAs
V Palanisamy, A Jakymiw, EA Van Tubergen, NJ D’silva, KL Kirkwood
Journal of dental research 91 (7), 651-658, 2012
Mouse CAF1 can function as a processive deadenylase/3′–5′-exonuclease in vitro but in yeast the deadenylase function of CAF1 is not required for mRNA poly (A) removal
P Viswanathan, T Ohn, YC Chiang, J Chen, CL Denis
Journal of Biological Chemistry 279 (23), 23988-23995, 2004
Characterization of CAF4 and CAF16 reveals a functional connection between the CCR4-NOT complex and a subset of SRB proteins of the RNA polymerase II holoenzyme
HY Liu, YC Chiang, J Pan, J Chen, C Salvadore, DC Audino, ...
Journal of Biological Chemistry 276 (10), 7541-7548, 2001
Characterization of salivary RNA by cDNA library analysis
NJ Park, X Zhou, T Yu, BMN Brinkman, BG Zimmermann, V Palanisamy, ...
Archives of oral biology 52 (1), 30-35, 2007
Identification of multiple RNA features that influence CCR4 deadenylation activity
P Viswanathan, J Chen, YC Chiang, CL Denis
Journal of Biological Chemistry 278 (17), 14949-14955, 2003
RNA-binding protein FXR1 regulates p21 and TERC RNA to bypass p53-mediated cellular senescence in OSCC
M Majumder, R House, N Palanisamy, S Qie, TA Day, D Neskey, JA Diehl, ...
PLoS genetics 12 (9), e1006306, 2016
AUF1 and HuR proteins stabilize interleukin-8 mRNA in human saliva
V Palanisamy, NJ Park, J Wang, DT Wong
Journal of dental research 87 (8), 772-776, 2008
Caspase-mediated cleavage of RNA-binding protein HuR regulates c-Myc protein expression after hypoxic stress
S Talwar, J Jin, B Carroll, A Liu, MB Gillespie, V Palanisamy
Journal of Biological Chemistry 286 (37), 32333-32343, 2011
The long (lncRNA) and short (miRNA) of it: TGFβ-mediated control of RNA-binding proteins and noncoding RNAs
H Janakiraman, RP House, VK Gangaraju, JA Diehl, PH Howe, ...
Molecular Cancer Research 16 (4), 567-579, 2018
Systematic mutagenesis of the leucine-rich repeat (LRR) domain of CCR4 reveals specific sites for binding to CAF1 and a separate critical role for the LRR in CCR4 deadenylase …
LB Clark, P Viswanathan, G Quigley, YC Chiang, JS McMahon, G Yao, ...
Journal of Biological Chemistry 279 (14), 13616-13623, 2004
Overexpression of RNA-binding protein CELF1 prevents apoptosis and destabilizes pro-apoptotic mRNAs in oral cancer cells
S Talwar, S Balasubramanian, S Sundaramurthy, R House, CJ Wilusz, ...
RNA biology 10 (2), 277-286, 2013
PRMT5-mediated arginine methylation activates AKT kinase to govern tumorigenesis
S Yin, L Liu, C Brobbey, V Palanisamy, LE Ball, SK Olsen, MC Ostrowski, ...
Nature communications 12 (1), 3444, 2021
MKP-1 regulates cytokine mRNA stability through selectively modulation subcellular translocation of AUF1
H Yu, Y Sun, C Haycraft, V Palanisamy, KL Kirkwood
Cytokine 56 (2), 245-255, 2011
Nucleophosmin is selectively deposited on mRNA during polyadenylation
V Palaniswamy, KCM Moraes, CJ Wilusz, J Wilusz
Nature structural & molecular biology 13 (5), 429-435, 2006
Sensitive spectrophotometric assay for 3-hydroxy-substituted flavonoids, based on their binding with molybdenum, antimony, or bismuth
P Viswanathan, V Sriram, G Yogeeswaran
Journal of Agricultural and Food Chemistry 48 (7), 2802-2806, 2000
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