Villasenor Alethia, Chong Diana C, Cleaver Ondine
Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9148, USA.
Dev Dyn. 2008 Nov;237(11):3270-9. doi: 10.1002/dvdy.21740.
Ngn3 is a bHLH transcription factor critical for the specification of endocrine cells in the pancreatic Islets of Langerhans. Previous studies in mouse embryos have reported transient expression of Ngn3 in scattered cells within the developing pancreatic epithelium during midgestation (Schwitzgebel et al. [2000] Development 127:3533-3542). Specifically, these Ngn3-expressing cells have been shown to be progenitor cells fated to give rise to islet endocrine cells (Gradwohl et al. [2000] Proc Natl Acad Sci USA 97:1607-1611). Here, we characterize the expression of Ngn3 transcripts and protein throughout pancreatic development. Interestingly, we identify and define a dramatic and previously unnoticed gap in developmental Ngn3 expression. We show that both Ngn3 transcript and protein expression occur in two distinct temporal waves, the first occurring early from approximately E8.5 to E11.0, and the second initiating at approximately E12.0. Strikingly, this observed biphasic expression correlates with the "first" and "second" transitions, which encompass two distinct waves of embryonic endocrine differentiation. In addition, our studies demonstrate that Ngn3 transcripts are markedly more widespread in the pancreatic epithelium than NGN3 protein, indicating that post-transcriptional regulation is likely to play a critical role during endocrine differentiation.
Ngn3是一种bHLH转录因子,对朗格汉斯胰岛内分泌细胞的特化至关重要。先前对小鼠胚胎的研究报道,在妊娠中期,Ngn3在发育中的胰腺上皮内的散在细胞中短暂表达(施维茨格贝尔等人,[2000]《发育》127:3533 - 3542)。具体而言,这些表达Ngn3的细胞已被证明是注定会产生胰岛内分泌细胞的祖细胞(格拉德沃尔等人,[2000]《美国国家科学院院刊》97:1607 - 1611)。在此,我们描述了Ngn3转录本和蛋白质在胰腺发育过程中的表达情况。有趣的是,我们识别并定义了发育过程中Ngn3表达的一个显著且此前未被注意到的间断。我们发现Ngn3转录本和蛋白质表达均出现两个不同的时间波,第一个时间波大约在胚胎第8.5天至第11.0天早期出现,第二个时间波大约在胚胎第12.0天开始。引人注目的是,观察到的这种双相表达与“第一次”和“第二次”转变相关,这两次转变涵盖了胚胎内分泌分化两个不同的波。此外,我们的研究表明,Ngn3转录本在胰腺上皮中的分布比NGN3蛋白明显更广泛,这表明转录后调控可能在内分泌分化过程中起关键作用。