Department of Developmental Biology, Stanford University School of Medicine, Stanford, California 94305, USA.
Center for Genome Regulation (CRG), Universidad de Chile, Santiago 7810000, Chile.
Genes Dev. 2022 Aug 1;36(15-16):916-935. doi: 10.1101/gad.349689.122. Epub 2022 Sep 29.
Alternative polyadenylation (APA) generates transcript isoforms that differ in the position of the 3' cleavage site, resulting in the production of mRNA isoforms with different length 3' UTRs. Although widespread, the role of APA in the biology of cells, tissues, and organisms has been controversial. We identified >500 genes that express mRNA isoforms with a long 3' UTR in proliferating spermatogonia but a short 3' UTR in differentiating spermatocytes due to APA. We show that the stage-specific choice of the 3' end cleavage site can be regulated by the arrangement of a canonical polyadenylation signal (PAS) near the distal cleavage site but a variant or no recognizable PAS near the proximal cleavage site. The emergence of transcripts with shorter 3' UTRs in differentiating cells correlated with changes in expression of the encoded proteins, either from off in spermatogonia to on in spermatocytes or vice versa. Polysome gradient fractionation revealed >250 genes where the long 3' UTR versus short 3' UTR mRNA isoforms migrated differently, consistent with dramatic stage-specific changes in translation state. Thus, the developmentally regulated choice of an alternative site at which to make the 3' end cut that terminates nascent transcripts can profoundly affect the suite of proteins expressed as cells advance through sequential steps in a differentiation lineage.
可变多聚腺苷酸化 (APA) 产生在 3' 切割位点位置上不同的转录本异构体,导致产生具有不同长度 3'UTR 的 mRNA 异构体。尽管 APA 广泛存在,但它在细胞、组织和生物体生物学中的作用一直存在争议。我们鉴定出 >500 个基因,这些基因在增殖的精原细胞中表达具有长 3'UTR 的 mRNA 异构体,但在分化的精母细胞中由于 APA 而表达具有短 3'UTR 的 mRNA 异构体。我们表明,3' 端切割位点的阶段特异性选择可以通过在远端切割位点附近排列规范的多聚腺苷酸化信号 (PAS) 来调节,但在近端切割位点附近没有或没有可识别的变体 PAS。在分化细胞中出现具有较短 3'UTR 的转录本与编码蛋白表达的变化相关,要么从精原细胞中的关闭到精母细胞中的开启,要么反之亦然。多核糖体梯度分级分离揭示了 >250 个基因,其中长 3'UTR 与短 3'UTR mRNA 异构体的迁移方式不同,这与翻译状态在特定阶段的显著变化一致。因此,在发育过程中选择替代的 3' 末端切割位点来终止新生转录物可以极大地影响细胞在分化谱系中通过连续步骤前进时表达的蛋白质组合。