Heimiller Joseph, Sridharan Vinod, Huntley Jim, Wesley Cedric S, Singh Ravinder
Department of Molecular, Cellular and Developmental Biology, University of Colorado, Boulder, Colorado, United States of America.
BioFrontiers Next-Gen Sequencing Facility, University of Colorado, Boulder, Colorado, United States of America.
PLoS One. 2014 Jul 11;9(7):e98585. doi: 10.1371/journal.pone.0098585. eCollection 2014.
The Drosophila polypyrimidine tract-binding protein (dmPTB or hephaestus) plays an important role during embryogenesis. A loss of function mutation, heph(03429), results in varied defects in embryonic developmental processes, leading to embryonic lethality. However, the suite of molecular functions that are disrupted in the mutant remains unknown. We have used an unbiased high throughput sequencing approach to identify transcripts that are misregulated in this mutant. Misregulated transcripts show evidence of significantly altered patterns of splicing (exon skipping, 5' and 3' splice site switching), alternative 5' ends, and mRNA level changes (up and down regulation). These findings are independently supported by reverse-transcription-polymerase chain reaction (RT-PCR) analysis and in situ hybridization. We show that a group of genes, such as Zerknüllt, z600 and screw are among the most upregulated in the mutant and have been functionally linked to dorso-ventral patterning and/or dorsal closure processes. Thus, loss of dmPTB function results in specific misregulated transcripts, including those that provide the missing link between the loss of dmPTB function and observed developmental defects in embryogenesis. This study provides the first comprehensive repertoire of genes affected in vivo in the heph mutant in Drosophila and offers insight into the role of dmPTB during embryonic development.
果蝇多嘧啶序列结合蛋白(dmPTB 或赫菲斯托斯蛋白)在胚胎发育过程中发挥着重要作用。功能缺失突变体 heph(03429)会导致胚胎发育过程中出现各种缺陷,进而导致胚胎致死。然而,该突变体中被破坏的一系列分子功能仍然未知。我们采用了一种无偏差的高通量测序方法来鉴定在该突变体中表达失调的转录本。表达失调的转录本显示出剪接模式(外显子跳跃、5'和 3'剪接位点切换)、可变 5'端以及 mRNA 水平变化(上调和下调)有显著改变的证据。这些发现得到了逆转录聚合酶链反应(RT-PCR)分析和原位杂交的独立支持。我们发现,一组基因,如 Zerknüllt、z600 和 screw,在突变体中上调最为明显,并且在功能上与背腹轴模式形成和/或背闭合过程相关。因此,dmPTB 功能的丧失会导致特定的转录本表达失调,包括那些在 dmPTB 功能丧失与胚胎发育中观察到的发育缺陷之间提供缺失联系的转录本。本研究首次全面列出了果蝇 heph 突变体中体内受影响的基因清单,并深入了解了 dmPTB 在胚胎发育过程中的作用。