Mina Kojima, PhD
Associate Research Scientist in GeneticsCards
About
Research
Publications
2025
Genetically encoded affinity reagents are a toolkit for visualizing and manipulating endogenous protein function in vivo
Boswell C, Hoppe C, Sherrard A, Miao L, Kojima M, Martino P, Zhao N, Stasevich T, Nicoli S, Giraldez A. Genetically encoded affinity reagents are a toolkit for visualizing and manipulating endogenous protein function in vivo. Nature Communications 2025, 16: 5503. PMID: 40595661, PMCID: PMC12216260, DOI: 10.1038/s41467-025-61003-w.Peer-Reviewed Original Research
2024
Circulating tumor-reactive KIR+CD8+ T cells suppress anti-tumor immunity in patients with melanoma
Lu B, Lucca L, Lewis W, Wang J, Nogueira C, Heer S, Rayon-Estrada V, Axisa P, Reeves S, Buitrago-Pocasangre N, Pham G, Kojima M, Wei W, Aizenbud L, Bacchiocchi A, Zhang L, Walewski J, Chiang V, Olino K, Clune J, Halaban R, Kluger Y, Coyle A, Kisielow J, Obermair F, Kluger H, Hafler D. Circulating tumor-reactive KIR+CD8+ T cells suppress anti-tumor immunity in patients with melanoma. Nature Immunology 2024, 26: 82-91. PMID: 39609626, PMCID: PMC12285569, DOI: 10.1038/s41590-024-02023-4.Peer-Reviewed Original ResearchThe maternal-to-zygotic transition: reprogramming of the cytoplasm and nucleus
Kojima M, Hoppe C, Giraldez A. The maternal-to-zygotic transition: reprogramming of the cytoplasm and nucleus. Nature Reviews Genetics 2024, 26: 245-267. PMID: 39587307, PMCID: PMC11928286, DOI: 10.1038/s41576-024-00792-0.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus Statements
2022
The landscape of pioneer factor activity reveals the mechanisms of chromatin reprogramming and genome activation
Miao L, Tang Y, Bonneau AR, Chan SH, Kojima ML, Pownall ME, Vejnar CE, Gao F, Krishnaswamy S, Hendry CE, Giraldez AJ. The landscape of pioneer factor activity reveals the mechanisms of chromatin reprogramming and genome activation. Molecular Cell 2022, 82: 986-1002.e9. PMID: 35182480, PMCID: PMC9327391, DOI: 10.1016/j.molcel.2022.01.024.Peer-Reviewed Original Research
2019
Amplification of a broad transcriptional program by a common factor triggers the meiotic cell cycle in mice
Kojima M, de Rooij D, Page D. Amplification of a broad transcriptional program by a common factor triggers the meiotic cell cycle in mice. ELife 2019, 8: e43738. PMID: 30810530, PMCID: PMC6392498, DOI: 10.7554/elife.43738.Peer-Reviewed Original Research
2018
Corrigendum to “Isolating mitotic and meiotic germ cells from male mice by developmental synchronization, staging, and sorting” [Dev. Biol. 443 (2018) 19–34]
Romer K, de Rooij D, Kojima M, Page D. Corrigendum to “Isolating mitotic and meiotic germ cells from male mice by developmental synchronization, staging, and sorting” [Dev. Biol. 443 (2018) 19–34]. Developmental Biology 2018, 445: 113. PMID: 30416000, DOI: 10.1016/j.ydbio.2018.10.021.Commentaries, Editorials and LettersIsolating mitotic and meiotic germ cells from male mice by developmental synchronization, staging, and sorting
Romer K, de Rooij D, Kojima M, Page D. Isolating mitotic and meiotic germ cells from male mice by developmental synchronization, staging, and sorting. Developmental Biology 2018, 443: 19-34. PMID: 30149006, DOI: 10.1016/j.ydbio.2018.08.009.Peer-Reviewed Original Research
2017
Meioc maintains an extended meiotic prophase I in mice
Soh Y, Mikedis M, Kojima M, Godfrey A, de Rooij D, Page D. Meioc maintains an extended meiotic prophase I in mice. PLOS Genetics 2017, 13: e1006704. PMID: 28380054, PMCID: PMC5397071, DOI: 10.1371/journal.pgen.1006704.Peer-Reviewed Original Research
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