Liangran Zhang

Harvard University, Cambridge, MA, United States 
"Liangran Zhang"
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Zhou X, Fang K, Liu Y, et al. (2023) ZFP541 and KCTD19 regulate chromatin organization and transcription programs for male meiotic progression. Cell Proliferation. e13567
Shao Q, Zhang Y, Liu Y, et al. (2023) ATF7IP2, a meiosis-specific partner of SETDB1, is required for proper chromosome remodeling and crossover formation during spermatogenesis. Cell Reports. 42: 112953
Tan T, Tan Y, Wang Y, et al. (2022) Negative supercoils regulate meiotic crossover patterns in budding yeast. Nucleic Acids Research
Veller C, Wang S, Zickler D, et al. (2022) Limitations of gamete sequencing for crossover analysis. Nature. 606: E1-E3
Yang X, Song M, Wang Y, et al. (2022) The ubiquitin-proteasome system regulates meiotic chromosome organization. Proceedings of the National Academy of Sciences of the United States of America. 119: e2106902119
Fan C, Yang X, Nie H, et al. (2022) Per-nucleus crossover covariation is regulated by chromosome organization. Iscience. 25: 104115
Shang Y, Tan T, Fan C, et al. (2022) Meiotic chromosome organization and crossover patterns. Biology of Reproduction
Wang Y, Zhai B, Tan T, et al. (2021) ESA1 regulates meiotic chromosome axis and crossover frequency via acetylating histone H4. Nucleic Acids Research
Girard C, Budin K, Boisnard S, et al. (2021) RNAi-Related Dicer and Argonaute Proteins Play Critical Roles for Meiocyte Formation, Chromosome-Axes Lengths and Crossover Patterning in the Fungus . Frontiers in Cell and Developmental Biology. 9: 684108
Song M, Zhai B, Yang X, et al. (2021) Interplay between Pds5 and Rec8 in regulating chromosome axis length and crossover frequency. Science Advances. 7
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