日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

The dynamics of centromere assembly and disassembly during quiescence

静止期着丝粒组装和解体的动态过程

Marescal, Océane; Su, Kuan-Chung; Moodie, Brittania; Taylor, Noah J L; Cheeseman, Iain M

5' UTR length regulates alternative N-terminal protein isoform production in health and disease

5' UTR 长度调控健康和疾病状态下 N 端蛋白亚型的产生。

Ly, Jimmy; Smith, Eric M; Di Bernardo, Matteo; Tao, Yi Fei; Black, Elizabeth M; Khalizeva, Ekaterina; Cheeseman, Iain M

Alternative start codon selection shapes mitochondrial function and rare human diseases.

替代起始密码子选择影响线粒体功能和罕见人类疾病。

Ly Jimmy, Di Bernardo Matteo, Tao Yi Fei, Khalizeva Ekaterina, Giuliano Christopher J, Lourido Sebastian, Fleming Mark D, Cheeseman Iain M

Co-essentiality analysis identifies PRR12 as a cohesin interacting protein and contributor to genomic integrity.

共必需性分析表明 PRR12 是一种与黏连蛋白相互作用的蛋白质,对基因组完整性有贡献

Nguyen Alexandra L, Smith Eric M, Cheeseman Iain M

KIF18A promotes chromosome congression in cooperation with CENP-E downstream of CENP-C.

KIF18A 与 CENP-C 下游的 CENP-E 协同作用,促进染色体聚集。

Miao Jiahang, Hara Masatoshi, Su Kuan-Chung, Keys Heather R, Kong Weixia, Takenoshita Yusuke, Cheeseman Iain M, Fukagawa Tatsuo

19S proteasome loss regulates mitotic spindle assembly through a ubiquitin-independent degradation mechanism.

19S蛋白酶体的丢失通过一种不依赖于泛素的降解机制来调节有丝分裂纺锤体的组装

Marescal Océane, Cheeseman Iain M

Functional genetics reveals modulators of antimicrotubule drug sensitivity.

功能遗传学揭示了抗微管药物敏感性的调节因子

Su Kuan-Chung, Radul Elena, Maier Nolan K, Tsang Mary-Jane, Goul Claire, Moodie Brittania, Marescal Océane, Keys Heather R, Cheeseman Iain M

The dynamics of centromere assembly and disassembly during quiescence

静止期着丝粒组装和解体的动态过程

Marescal, Océane; Su, Kuan-Chung; Moodie, Brittania; Taylor, Noah J L; Cheeseman, Iain M

SRSF12 is a primate-specific splicing factor that induces a tissue-specific gene expression program

SRSF12 是一种灵长类特异性剪接因子,可诱导组织特异性基因表达程序。

Ly, Jimmy; Cady, Sarah L; Khalizeva, Ekaterina; Haug, Sofia; Cheeseman, Iain M

19S proteasome loss causes monopolar spindles through ubiquitin-independent KIF11 degradation

19S蛋白酶体的丢失通过不依赖于泛素的KIF11降解导致单极纺锤体形成。

Marescal, Océane; Cheeseman, Iain M