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Development of a split-toxin CRISPR screening platform to systematically identify regulators of human myoblast fusion

Nature Communications. 2026-01; 
Haifeng Zhang, Renjie Shang, Zheng Zhang, Min Zhou, Anne Bigot, Yanqing Cai, Yanran Zhao, Yushu Wang, Aaryahi Deshmukh, Elena Kudryashova, Dmitri S Kudryashov, Cuiyu He, Vincent Mouly, Pengpeng Bi Department of Genetics, University of Georgia
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Abstract

Muscle defects are common in human developmental disorders and often cause severe functional impairment. These defects arise from intricate tissue crosstalk and rare genetic mutations, underscoring the need to systematically identify cell-autonomous mechanisms regulating human myogenesis. Here we show a rationally designed, high-throughput genetic screening platform that integrates human myoblast models, customized CRISPR libraries, and a split-toxin strategy that enables quantitative selection of fusion-defective myocytes. Leveraging this platform, our initial screen uncovers a large group of hits essential for human myoblast fusion. The majority of these hits converge into 23 protein complexes. Notably, mutat... More

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