LBPO.MCB01 · 分子与细胞生物学 · Late-Breaking

PHIP抑制NuRD以促成SWI/SNF突变型癌症的生长

PHIP suppresses NuRD to enable the growth of SWI/SNF-mutant cancers

海报缩略图:PHIP抑制NuRD以促成SWI/SNF突变型癌症的生长
编号 LB093 展板 1 时间 4/19 02:00–05:00 区域 Section 55 主讲 Hayden Malone, MS
分会场 Late-Breaking Research: Molecular/Cellular Biology and Genetics 1
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作者与单位 Authors & Affiliations

Hayden A. Malone1, Jacqueline A. Myers1, Emma G. Gruss1, Marc A. Morgan1, Jake D. Friske1, Tabitha C. McCarty1, John J. Navarro1, Sarah Robinson1, Rebecca L. Halliburton1, Sandra J. Kietlinska1, Francisca N. De Luna Vitorino2, Baranda S. Hansen1, Shondra M. Pruett-Miller1, Benjamin A. Garcia2, Martine F. Roussel1, Janet F. Partridge1, Charles W. M. Roberts1

1St. Jude Children's Research Hospital, Memphis, TN,2Washington University School of Medicine, St. Louis, MO

摘要 Abstract

中文摘要
SWI/SNF染色质重塑复合物在所有癌症的20%以及若干发育障碍中发生扰动,然而这些突变导致转录失调并驱动疾病的机制尚不甚明确。为阐明这些机制并识别这些突变所造成的脆弱性,我们在数百个癌细胞系中利用全基因组CRISPR-Cas9筛选,鉴定出染色质阅读蛋白PHIP是SWI/SNF功能广泛破坏的癌症中的一种特异性依赖。在机制上,我们揭示PHIP与SWI/SNF协作,通过泛素化并抑制抑制性核小体重塑与去乙酰化酶(NuRD)复合物的亚基来促进转录激活。我们证明,SWI/SNF的缺失导致NuRD复合物在启动子处累积,若不被PHIP拮抗,它们将在此引起广泛的转录沉默。总之,我们将PHIP鉴定为在发育和疾病中发挥作用的不同染色质调节因子之间相互作用的调控者,以及在具有广泛SWI/SNF失活的癌症中一个可靶向的脆弱性。
查看英文原文 English abstract
SWI/SNF chromatin remodeling complexes are perturbed in 20% of all cancers and in several developmental disorders, yet the mechanisms by which these mutations dysregulate transcription and drive disease are poorly understood. To both elucidate these mechanisms and identify vulnerabilities caused by these mutations, we leveraged genome-wide CRISPR-Cas9 screening in hundreds of cancer cell lines and identified the chromatin reader protein PHIP as a specific dependency in cancers with broadly disrupted SWI/SNF function. Mechanistically, we reveal that PHIP cooperates with SWI/SNF to facilitate transcriptional activation by ubiquitinating and suppressing subunits of the repressive Nucleosome Remodeling and Deacetylase (NuRD) complex. We demonstrate that loss of SWI/SNF results in NuRD complexes accumulating at promoters where they would otherwise cause widespread transcriptional silencing if not antagonized by PHIP. Collectively, we identify PHIP as a regulator of the interplay between distinct chromatin regulators that function in development and disease and as a targetable vulnerability in cancers with broad SWI/SNF inactivation.
利益披露 Disclosure
H. A. Malone, None.. J. A. Myers, None.. E. G. Gruss, None.. M. A. Morgan, None.. J. D. Friske, None.. T. C. McCarty, None.. J. J. Navarro, None.. S. Robinson, None.. R. L. Halliburton, None.. S. J. Kietlinska, None.. F. N. De Luna Vitorino, None.. B. S. Hansen, None.. S. M. Pruett-Miller, None.. B. A. Garcia, None.. M. F. Roussel, None.. J. F. Partridge, None.. C. W. M. Roberts, None.

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