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FLASH Is Required for the Endonucleolytic Cleavage of Histone Pre-mRNAs but Is Dispensable for the 5′ Exonucleolytic Degradation of the Downstream Cleavage Product

机译:组蛋白前mRNA的内切核酸裂解需要闪存,但下游裂解产物的5'外切核酸降解则不需要闪存。

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3′-end cleavage of histone pre-mRNAs is catalyzed by CPSF-73 and requires the interaction of two U7 snRNP-associated proteins, FLASH and Lsm11. Here, by using scanning mutagenesis we identify critical residues in human FLASH and Lsm11 that are involved in the interaction between these two proteins. We also demonstrate that mutations in the region of FLASH located between amino acids 50 and 99 do not affect binding of Lsm11. Interestingly, these mutations convert FLASH into an inhibitory protein that reduces in vitro processing efficiency of highly active nuclear extracts. Our results suggest that this region in FLASH in conjunction with Lsm11 is involved in recruiting a yet-unknown processing factor(s) to histone pre-mRNA. Following endonucleolytic cleavage of histone pre-mRNA, the downstream cleavage product (DCP) is degraded by the 5′–3′ exonuclease activity of CPSF-73, which also depends on Lsm11. Strikingly, while cleavage of histone pre-mRNA is stimulated by FLASH and inhibited by both dominant negative mutants of FLASH and anti-FLASH antibodies, the 5′–3′ degradation of the DCP is not affected. Thus, the recruitment of FLASH to the processing complex plays a critical role in activating the endonuclease mode of CPSF-73 but is dispensable for its 5′–3′ exonuclease activity. These results suggest that CPSF-73, the catalytic component in both reactions, can be recruited to histone pre-mRNA largely in a manner independent of FLASH, possibly by a separate domain in Lsm11.
机译:CPSF-73催化组蛋白前mRNA的3'末端裂解,需要两个U7 snRNP相关蛋白FLASH和Lsm11的相互作用。在这里,通过使用扫描诱变,我们确定了人类FLASH和Lsm11中的关键残基,这些残基与这两种蛋白之间的相互作用有关。我们还证明,位于氨基酸50和99之间的FLASH区域中的突变不会影响Lsm11的结合。有趣的是,这些突变将FLASH转换成抑制蛋白,从而降低了高活性核提取物的体外加工效率。我们的结果表明,FLASH中的该区域与Lsm11一起参与了组蛋白前mRNA的未知加工因子的募集。组蛋白前mRNA的内切核酸酶裂解后,下游裂解产物(DCP)被CPSF-73的5'–3'核酸外切酶活性降解,这也取决于Lsm11。令人惊讶的是,虽然组蛋白pre-mRNA的切割受到FLASH的刺激,并受到FLASH和抗FLASH抗体的显性负突变体的抑制,但DCP的5'–3'降解不受影响。因此,向处理复合物中募集FLASH在激活CPSF-73的核酸内切酶模式中起关键作用,但对于其5'-3'核酸外切酶活性是必不可少的。这些结果表明CPSF-73,这两个反应中的催化成分,可以很大程度上独立于FLASH,可能通过Lsm11中的单独结构域募集到组蛋白前mRNA。

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