Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Sector 81, 140306, Punjab, India.
Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Sector 81, 140306, Punjab, India.
Biophys Chem. 2024 Nov;314:107307. doi: 10.1016/j.bpc.2024.107307. Epub 2024 Aug 8.
The two transesterification reactions of pre-mRNA splicing require highly complex yet well-controlled rearrangements of small nuclear RNAs and proteins (snRNP) in the spliceosome. The efficiency and accuracy of these reactions are critical for gene expression, as almost all human genes pass through pre-mRNA splicing. Key parameters that determine the splicing outcome are the length of the intron, the strengths of its splicing signals and gaps between them, and the presence of splicing controlling elements. In particular, the gap between the branchpoint (BP) and the 3' splice site (ss) of introns is a major determinant of the splicing efficiency. This distance falls within a small range across the introns of an organism. The constraints exist possibly because BP and 3'ss are recognized by BP-binding proteins, U2 snRNP and U2 accessory factors (U2AF) in a coordinated manner. Furthermore, varying distances between the two signals may also affect the second transesterification reaction since the intervening RNA needs to be accurately positioned within the complex RNP machinery. Splicing such pre-mRNAs requires cis-acting elements in the RNA and many trans-acting splicing regulators. Regulated pre-mRNA splicing with BP-distant 3'ss adds another layer of control to gene expression and promotes alternative splicing.
前体 mRNA 剪接的两个转酯反应需要剪接体中小核 RNA 和蛋白质 (snRNP) 进行高度复杂但又很好控制的重排。这些反应的效率和准确性对基因表达至关重要,因为几乎所有人类基因都要经过前体 mRNA 剪接。决定剪接结果的关键参数是内含子的长度、剪接信号的强度及其之间的间隙以及剪接调控元件的存在。特别是,内含子的分支点 (BP) 和 3'剪接位点 (ss) 之间的间隙是剪接效率的主要决定因素。该距离在生物体的内含子中处于一个小范围内。这种约束可能存在,因为 BP 和 3'ss 以协调的方式被 BP 结合蛋白、U2 snRNP 和 U2 辅助因子 (U2AF) 识别。此外,两个信号之间的不同距离也可能影响第二次转酯反应,因为需要在复杂的 RNP 机制内准确定位中间 RNA。剪接这种前体 mRNA 需要 RNA 中的顺式作用元件和许多反式作用剪接调控因子。具有 BP 远距离 3'ss 的调节前体 mRNA 剪接为基因表达增加了另一层控制,并促进了可变剪接。