Andras Malnasi-Csizmadia

Affiliations: 
1994-1999 Biochemistry Eötvös Loránd University 
 1999-2003 Biochemistry University of Leicester, Leicester, England, United Kingdom 
 2004- Biochemistry Eötvös Loránd University 
Website:
http://malnalab.hu/whatss-new/
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"Andras Malnasi-Csizmadia"
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Publications

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Suthar SK, Rauscher AÁ, Winternitz M, et al. (2021) Chiral HPLC separation of enantiomeric blebbistatin derivatives and racemization analysis in vertebrate tissues. Journal of Pharmaceutical and Biomedical Analysis. 204: 114246
Gyimesi M, Rauscher AÁ, Suthar SK, et al. (2021) . The Journal of Pharmacology and Experimental Therapeutics
Gyimesi M, Horváth ÁI, Túrós D, et al. (2020) Single Residue Variation in Skeletal Muscle Myosin Enables Direct and Selective Drug Targeting for Spasticity and Muscle Stiffness. Cell
Harami GM, Kovács ZJ, Pancsa R, et al. (2020) Phase separation by ssDNA binding protein controlled via protein-protein and protein-DNA interactions. Proceedings of the National Academy of Sciences of the United States of America
Horváth ÁI, Gyimesi M, Várkuti BH, et al. (2020) Effect of allosteric inhibition of non-muscle myosin 2 on its intracellular diffusion. Scientific Reports. 10: 13341
Pénzes M, Túrós D, Máthé D, et al. (2020) Direct myosin-2 inhibition enhances cerebral perfusion resulting in functional improvement after ischemic stroke. Theranostics. 10: 5341-5356
López-Dávila AJ, Chalovich JM, Zittrich S, et al. (2020) Cycling Cross-Bridges Contribute to Thin Filament Activation in Human Slow-Twitch Fibers. Frontiers in Physiology. 11: 144
Suthar SK, Gyimesi M, Kurdi C, et al. (2020) SAR Analysis of Linker Derivatives of the Smooth Muscle Myosin Specific CK-571 Compound Biophysical Journal. 118: 495a
Harami G, Kovacs ZJ, Pálinkás J, et al. (2020) E. coli Single-Stranded DNA Binding (SSB) Protein Undergoes Dynamic Liquid-Liquid Phase Separation Controlled via Protein-Protein and Protein-DNA Interactions Biophysical Journal. 118: 484a
Túrós D, Horvath AI, Gyimesi M, et al. (2020) 3D Movement Analysis using Deep Learning Algorithms Reveals Alterations in Motor Functions After Neurological Injuries in RAT Spasticity Model Biophysical Journal. 118
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