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QKI通过与U6三小核核糖核蛋白复合体结合,在心脏发生过程中确保剪接保真度,从而激活弱5'剪接位点的剪接。

QKI ensures splicing fidelity during cardiogenesis by engaging the U6 tri-snRNP to activate splicing at weak 5' splice sites.

作者信息

Akinyi Maureen V, Yao Wenjie, Zeman Jakub, Hipp Clara, Bartsch Deniz, Heaven Laurence, Le Roux Charlotte A, Starner Anne C, Yuan Fei, Bartels Mason D, Zhao Fangyu, Ha Hang Le, Sharma Riddhi, Choudhary Bhumika, Biayna Josep, Brandes Ralf P, Dumbović Gabrijela, Ray Arjun, Wittig Ilka, Muench Christian, Sattler Michael, Van Nostrand Eric L, Kurian Leo

机构信息

Therapeutic Innovation Center & the Verna Marrs McLean Department of Biochemistry & Molecular Pharmacology, Baylor College of Medicine, Houston, TX, USA.

DFG Excellence Cluster, Cardiopulmonary Institute (CPI), 60590 Frankfurt, Germany.

出版信息

bioRxiv. 2025 Sep 7:2025.09.04.674271. doi: 10.1101/2025.09.04.674271.

Abstract

During organogenesis, precise pre-mRNA splicing is essential to assemble tissue architecture. Many developmentally essential exons bear weak 5' splice sites (5'SS) yet are spliced with high precision, implying unknown yet active splicing fidelity mechanisms. By combining transcriptome and alternative splicing profiling with temporal eCLIP mapping of RNA interactions across development, we identify the RNA-binding protein QKI as an essential direct regulator of splicing fidelity in key cardiac transcripts. Although QKI is dispensable for cardiac specification, its loss disrupts sarcomere assembly despite intact expression of sarcomere mRNAs through exon skipping and nuclear retention of mis-spliced RNAs. QKI-dependent exons in essential cardiac genes have weak 5'SS and frequently show poor complementarity with U6 snRNA. We show that QKI directly interacts with U6 snRNA using an overlapping interface to its traditional intronic binding activity, securing U4/U6·U5 tri-snRNP to ensure splicing fidelity. Thus, QKI exemplifies how context-aware RBPs enforce splicing fidelity at structurally vulnerable splice sites during organogenesis.

摘要

在器官发生过程中,精确的前体mRNA剪接对于构建组织结构至关重要。许多在发育中至关重要的外显子具有较弱的5'剪接位点(5'SS),但仍能以高精度进行剪接,这意味着存在未知但活跃的剪接保真机制。通过将转录组和可变剪接分析与整个发育过程中RNA相互作用的时间eCLIP图谱相结合,我们确定RNA结合蛋白QKI是关键心脏转录本中剪接保真度的重要直接调节因子。虽然QKI对于心脏特化并非必需,但其缺失会破坏肌节组装,尽管肌节mRNA通过外显子跳跃和错配剪接RNA的核滞留而完整表达。必需心脏基因中依赖QKI的外显子具有较弱的5'SS,并且通常与U6 snRNA的互补性较差。我们表明,QKI通过与其传统内含子结合活性重叠的界面直接与U6 snRNA相互作用,固定U4/U6·U5三小核核糖核蛋白以确保剪接保真度。因此,QKI例证了情境感知的RNA结合蛋白如何在器官发生过程中在结构上易受影响的剪接位点处增强剪接保真度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99ef/12424749/f02cbe3229c3/nihpp-2025.09.04.674271v1-f0008.jpg

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