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Mohammed Mahamdeh
Mohammed Mahamdeh
Instuctor of Medicine, Harvard Medical School/ MassachusettsGeneral Hospital
Verified email at mgh.harvard.edu
Title
Cited by
Cited by
Year
Spastin is a dual-function enzyme that severs microtubules and promotes their regrowth to increase the number and mass of microtubules
YW Kuo, O Trottier, M Mahamdeh, J Howard
Proceedings of the National Academy of Sciences 116 (12), 5533-5541, 2019
902019
Optical tweezers with millikelvin precision of temperature-controlled objectives and base-pair resolution
M Mahamdeh, E Schäffer
Optics express 17 (19), 17190-17199, 2009
882009
Under-filling trapping objectives optimizes the use of the available laser power in optical tweezers
M Mahamdeh, CP Campos, E Schäffer
Optics express 19 (12), 11759-11768, 2011
872011
Label Free High Speed Wide Field Imaging of Single Microtubules using Interference Reflection Microscopy
M Mahamdeh, S Simmert, A Łuchniak, E Schäffer, J Howard
Biophysical Journal 114 (3), 504a-505a, 2018
862018
Inertial effects of a small Brownian particle cause a colored power spectral density of thermal noise
A Jannasch, M Mahamdeh, E Schäffer
Physical review letters 107 (22), 228301, 2011
822011
Stu2, the budding yeast XMAP215/Dis1 homolog, promotes assembly of yeast microtubules by increasing growth rate and decreasing catastrophe frequency
M Podolski, M Mahamdeh, J Howard
Journal of Biological Chemistry 289 (41), 28087-28093, 2014
592014
Kinesin Kip2 enhances microtubule growth in vitro through length-dependent feedback on polymerization and catastrophe
A Hibbel, A Bogdanova, M Mahamdeh, A Jannasch, M Storch, E Schäffer, ...
Elife 4, e10542, 2015
522015
Cilia function as calcium-mediated mechanosensors that instruct left-right asymmetry
L Djenoune, M Mahamdeh, TV Truong, CT Nguyen, SE Fraser, ...
Science 379 (6627), 71-78, 2023
352023
Systematic identification of anticancer drug targets reveals a nucleus-to-mitochondria ROS-sensing pathway
J Zhang, CM Simpson, J Berner, HB Chong, J Fang, Z Ordulu, ...
Cell 186 (11), 2361-2379. e25, 2023
322023
Implementation of interference reflection microscopy for label-free, high-speed imaging of microtubules
M Mahamdeh, J Howard
JoVE (Journal of Visualized Experiments), e59520, 2019
232019
The force required to remove tubulin from the microtubule lattice by pulling on its α-tubulin C-terminal tail
YW Kuo, M Mahamdeh, Y Tuna, J Howard
Nature Communications 13 (1), 3651, 2022
122022
RBPMS2 is a myocardial-enriched splicing regulator required for cardiac function
AA Akerberg, M Trembley, V Butty, A Schwertner, L Zhao, M Beerens, ...
Circulation Research 131 (12), 980-1000, 2022
92022
RBPMS2 is a conserved regulator of alternative splicing that promotes myofibrillar organization and optimal calcium handling in cardiomyocytes
AA Akerberg, M Trembley, V Butty, A Schwertner, L Zhao, M Beerens, ...
bioRxiv, 2021.03. 08.434502, 2021
52021
High resolution optical tweezers optimized for biological studies
M Mahamdeh
Technischen Universität Dresden, 2011
4*2011
The force required to remove tubulin from the microtubule lattice
YW Kuo, M Mahamdeh, Y Tuna, J Howard
bioRxiv, 2022.03. 28.486117, 2022
22022
Nicotinamide adenine dinucleotides and their precursor NMN have no direct effect on microtubule dynamics in purified brain tubulin
A Luchniak, M Mahamdeh, J Howard
Plos one 14 (8), e0220794, 2019
22019
An AAV capsid increases transduction of striatum and a ChAT promoter allows selective cholinergic neuron transduction
MC Santoscoy, P Espinoza, D De La Cruz, M Mahamdeh, JR Starr, ...
Molecular Therapy-Methods & Clinical Development 29, 532-540, 2023
12023
Dynamic microtubules slow down during their shrinkage phase
A Luchniak, YW Kuo, C McGuinness, S Sutradhar, R Orbach, ...
Biophysical Journal 122 (4), 616-623, 2023
12023
Processivity of molecular motors under vectorial loads
H Khataee, M Mahamdeh, Z Neufeld
Physical Review E 102 (2), 022406, 2020
12020
Effects of Severing Enzymes on the Length Distribution and Total Mass of Microtubules
Y Kuo, O Trottier, M Mahamdeh, J Howard
Biophysical Journal 118 (3), 598a, 2020
12020
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