生物
核酸内切酶
细胞质
转录因子
半胱氨酸
结合位点
细胞生物学
核心
神经发生
RNA结合蛋白
信使核糖核酸
生物化学
酶
基因
作者
Min-Han Lin,Madeline K. Jensen,Nathan D. Elrod,Hsu-Feng Chu,MaryClaire Haseley,Alissa C Beam,Kai-Lieh Huang,Wesley Chiang,William K. Russell,Kelsey S. Williams,Christoph Pröschel,Eric J. Wagner,Liang Tong
出处
期刊:Molecular Cell
[Elsevier BV]
日期:2024-07-19
卷期号:84 (15): 2900-2917.e10
被引量:4
标识
DOI:10.1016/j.molcel.2024.06.017
摘要
INTS11 and CPSF73 are metal-dependent endonucleases for Integrator and pre-mRNA 3'-end processing, respectively. Here, we show that the INTS11 binding partner BRAT1/CG7044, a factor important for neuronal fitness, stabilizes INTS11 in the cytoplasm and is required for Integrator function in the nucleus. Loss of BRAT1 in neural organoids leads to transcriptomic disruption and precocious expression of neurogenesis-driving transcription factors. The structures of the human INTS9-INTS11-BRAT1 and Drosophila dIntS11-CG7044 complexes reveal that the conserved C terminus of BRAT1/CG7044 is captured in the active site of INTS11, with a cysteine residue directly coordinating the metal ions. Inspired by these observations, we find that UBE3D is a binding partner for CPSF73, and UBE3D likely also uses a conserved cysteine residue to directly coordinate the active site metal ions. Our studies have revealed binding partners for INTS11 and CPSF73 that behave like cytoplasmic chaperones with a conserved impact on the nuclear functions of these enzymes.
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