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Science (New York, N.Y.)|April 23, 2026
Microtubule dynamics control the direction of cardiomyocyte growthEmily A Scarborough, Rani M Randell, Keita Uchida, et al.Biorxiv : the Preprint Server for Biology|February 9, 2026
Active transport of tRNAs facilitates distributed protein synthesisJennifer Morgan Petrosino, Vasiliki Courelli, Keita Uchida, et al.Biorxiv : the Preprint Server for Biology|September 4, 2024
Generation of humanized mouse models to support therapeutic development for SYNGAP1 and STXBP1 disordersAlex J Felix, Taryn Wilson, Rani Randell, et al.Frontiers in Cell and Developmental Biology|April 18, 2022
Transcriptional, Post-Transcriptional, and Post-Translational Mechanisms Rewrite the Tubulin Code During Cardiac Hypertrophy and FailureSai Aung Phyo, Keita Uchida, Christina Yingxian Chen, et al.Nature Communications|March 12, 2021
Microtubules orchestrate local translation to enable cardiac growthEmily A Scarborough, Keita Uchida, Maria Vogel, et al.Circulation Research|December 12, 2019
A Balance Between Intermediate Filaments and Microtubules Maintains Nuclear Architecture in the CardiomyocyteJulie Heffler, Parisha P Shah, Patrick Robison, et al.Science Signaling|April 21, 2026
mTORC1 and nuclear ERK spatially control translation in cardiomyocytes through 4EBP1 phosphorylationKeita Uchida, Emily A Scarborough, Elizabeth Pruzinsky, et al.Proceedings of the National Academy of Sciences of the United States of America|October 29, 2014
Distinct macrophage lineages contribute to disparate patterns of cardiac recovery and remodeling in the neonatal and adult heartKory J Lavine, Slava Epelman, Keita Uchida, et al.Angewandte Chemie (International Ed. in English)|July 30, 2025
Water-Soluble Molecular Wires for Membrane Potential ImagingMirna El Khatib, Margret A Fye, Keita Uchida, et al.Nature Cardiovascular Research|October 10, 2025
Microtubule forces drive nuclear damage in LMNA cardiomyopathyDaria Amiad Pavlov, Julie Heffler, Carmen Suay-Corredera, et al.Pageof 3