Mutations in the RNA splicing factor gene SF3B1 are common across hematologic and solid cancers and result in widespread alterations in splicing, yet there is currently no therapeutic means to correct this mis-splicing. Here, we utilize synthetic introns uniquely responsive to mutant SF3B1 to identify trans factors required for aberrant mutant SF3B1 splicing activity. This revealed the G-patch domain-containing protein GPATCH8 as required for mutant SF3B1-induced splicing alterations and impaired hematopoiesis. GPATCH8 is involved in quality control of branchpoint selection, interacts with the RNA helicase DHX15, and functionally opposes SURP and G-patch domain containing 1 (SUGP1), a G-patch protein recently implicated in SF3B1-mutant diseases. Silencing of GPATCH8 corrected one-third of mutant SF3B1-dependent splicing defects and was sufficient to improve dysfunctional hematopoiesis in SF3B1-mutant mice and primary human progenitors. These data identify GPATCH8 as a novel splicing factor required for mis-splicing by mutant SF3B1 and highlight the therapeutic impact of correcting aberrant splicing in SF3B1-mutant cancers.
GPATCH8 modulates mutant SF3B1 mis-splicing and pathogenicity in hematologic malignancies.
GPATCH8 调节突变 SF3B1 错误剪接和血液恶性肿瘤中的致病性
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作者:Benbarche Salima, Pineda Jose Mario Bello, Galvis Laura Baquero, Biswas Jeetayu, Liu Bo, Wang Eric, Zhang Qian, Hogg Simon J, Lyttle Kadeen, Dahi Ariana, Lewis Alexander M, Sarchi Martina, Rahman Jahan, Fox Nina, Ai Yuxi, Mehta Sanjoy, Garippa Ralph, Ortiz-Pacheco Juliana, Li Zhuoning, Monetti Mara, Stanley Robert F, Doulatov Sergei, Bradley Robert K, Abdel-Wahab Omar
| 期刊: | Molecular Cell | 影响因子: | 16.600 |
| 时间: | 2024 | 起止号: | 2024 May 16; 84(10):1886-1903 |
| doi: | 10.1016/j.molcel.2024.04.006 | 研究方向: | 肿瘤 |
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