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Megha Rajendran
Megha Rajendran
NICHD/NIH
Verified email at nih.gov
Title
Cited by
Cited by
Year
Imaging adenosine triphosphate (ATP)
M Rajendran, E Dane, J Conley, M Tantama
The Biological Bulletin 231 (1), 73-84, 2016
1452016
Lanthanide-based imaging of protein–protein interactions in live cells
M Rajendran, E Yapici, LW Miller
Inorganic chemistry 53 (4), 1839-1853, 2014
872014
VDAC regulation of mitochondrial calcium flux: From channel biophysics to disease
WM Rosencrans, M Rajendran, SM Bezrukov, TK Rostovtseva
Cell calcium 94, 102356, 2021
662021
Base catalyzed cyclization of N-aryl and N-alkyl-O-propargyl carbamates to 4-alkylidene-2-oxazolidinones
R Ramesh, Y Chandrasekaran, R Megha, S Chandrasekaran
Tetrahedron 63 (37), 9153-9162, 2007
542007
Cell-penetrating peptides as delivery vehicles for a protein-targeted terbium complex
S Mohandessi, M Rajendran, D Magda, LW Miller
Chemistry (Weinheim an der Bergstrasse, Germany) 18 (35), 10825, 2012
512012
Evaluating the performance of time-gated live-cell microscopy with lanthanide probes
M Rajendran, LW Miller
Biophysical journal 109 (2), 240-248, 2015
402015
How to build a time‐gated luminescence microscope
D Jin, Y Lu, RC Leif, S Yang, M Rajendran, LW Miller
Current Protocols in Cytometry 67 (1), 2.22. 1-2.22. 36, 2014
312014
Cytoplasmic delivery and selective, multicomponent labeling with oligoarginine-linked protein tags
X Zou, M Rajendran, D Magda, LW Miller
Bioconjugate chemistry 26 (3), 460-465, 2015
212015
Imaging pH dynamics simultaneously in two cellular compartments using a ratiometric pH-sensitive mutant of mCherry
M Rajendran, B Claywell, EP Haynes, U Scales, CK Henning, M Tantama
ACS omega 3 (8), 9476-9486, 2018
202018
Applications of Propargyl Esters of Amino Acids in Solution-Phase Peptide Synthesis
R Ramapanicker, R Gupta, R Megha, S Chandrasekaran
92011
Applications of Propargyl Esters of Amino Acids in Solution-Phase Peptide Synthesis
R Ramapanicker, R Gupta, R Megha, S Chandrasekaran
International Journal of Peptides 2011, 2011
92011
Quantifying acute fuel and respiration dependent pH homeostasis in live cells using the mCherryTYG mutant as a fluorescence lifetime sensor
EP Haynes, M Rajendran, CK Henning, A Mishra, AM Lyon, M Tantama
Analytical chemistry 91 (13), 8466-8475, 2019
82019
How cytoskeletal proteins regulate mitochondrial energetics in cell physiology and diseases
T Solomon, M Rajendran, T Rostovtseva, L Hool
Philosophical Transactions of the Royal Society B 377 (1864), 20210324, 2022
62022
Restricting α-synuclein transport into mitochondria by inhibition of α-synuclein–VDAC complexation as a potential therapeutic target for Parkinson’s disease treatment
M Rajendran, M Queralt-Martín, PA Gurnev, WM Rosencrans, A Rovini, ...
Cellular and Molecular Life Sciences 79 (7), 368, 2022
42022
Fluorescence lifetime imaging of compartmental pH dynamics using red fluorescent protein sensors in live cells
E Haynes, M Rajendran, A Lyon, N Noinaj, R Day, M Tantama
The FASEB Journal 32, 657.14-657.14, 2018
22018
Defining the roles and regulation of the mitochondrial VDAC isoforms one molecule at a time
WM Rosencrans, M Queralt-Martin, HJ Lessen, MG Larimi, M Rajendran, ...
Biophysical journal 122 (3), 93a, 2023
12023
Role of VDAC isoforms in alpha-Synuclein entry into mitochondria
M Rajendran, MP Strub, SM Bezrukov, TK Rostovtseva
Biophysical Journal 120 (3), 348a, 2021
12021
VDAC isoforms differentially regulate mitochondrial proteome and respiration in cancer cells
M Rajendran, WM Rosencrans, J Hwang, B Quan, D Huynh, TF Chou, ...
Biophysical Journal 123 (3), 523a-524a, 2024
2024
Measuring the mitochondrial outer membrane potential in live cells
K Abrantes, SM Bezrukov, TK Rostovtseva, M Rajendran
Biophysical Journal 123 (3), 523a, 2024
2024
Role of VDAC isoforms in bioenergetics and metabolism
M Rajendran, SM Bezrukov, TK Rostovtseva
Biophysical Journal 122 (3), 93a, 2023
2023
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Articles 1–20