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tbx2a/b转录因子指导斑马鱼中前肾的分段和斯坦尼氏小体的形成。

The tbx2a/b transcription factors direct pronephros segmentation and corpuscle of Stannius formation in zebrafish.

作者信息

Drummond Bridgette E, Li Yue, Marra Amanda N, Cheng Christina N, Wingert Rebecca A

机构信息

Department of Biological Sciences, Center for Stem Cells and Regenerative Medicine, Center for Zebrafish Research, University of Notre Dame, Notre Dame, IN 46556, USA.

Department of Biological Sciences, Center for Stem Cells and Regenerative Medicine, Center for Zebrafish Research, University of Notre Dame, Notre Dame, IN 46556, USA.

出版信息

Dev Biol. 2017 Jan 1;421(1):52-66. doi: 10.1016/j.ydbio.2016.10.019. Epub 2016 Nov 11.

Abstract

The simplified and genetically conserved zebrafish pronephros is an excellent model to examine the cryptic processes of cell fate decisions during the development of nephron segments as well as the origins of associated endocrine cells that comprise the corpuscles of Stannius (CS). Using whole mount in situ hybridization, we found that transcripts of the zebrafish genes t-box 2a (tbx2a) and t-box 2b (tbx2b), which belong to the T-box family of transcription factors, were expressed in the caudal intermediate mesoderm progenitors that give rise to the distal pronephros and CS. Deficiency of tbx2a, tbx2b or both tbx2a/b reduced the size of the distal late (DL) segment, which was accompanied by a proximal convoluted segment (PCT) expansion. Further, tbx2a/b deficiency led to significantly larger CS clusters. These phenotypes were also observed in embryos with the from beyond (fby) mutation, which encodes a premature stop codon in the tbx2b T-box sequence. Conversely, overexpression of tbx2a and tbx2b in wild-type embryos expanded the DL segment where cells were comingled with the adjacent DE, and also decreased CS cell number, but notably did not alter PCT development-providing independent evidence that tbx2a and tbx2b are each necessary and sufficient to promote DL fate and suppress CS genesis. Epistasis studies indicated that tbx2a acts upstream of tbx2b to regulate the DL and CS fates, and likely has other targets as well. Retinoic acid (RA) addition and inhibition studies revealed that tbx2a and tbx2b are negatively regulated by RA signaling. Interestingly, the CS cell expansion that typifies tbx2a/b deficiency also occurred when blocking Notch signaling with the chemical DAPT (N-[N-(3,5-difluorophenacetyl)-L-alanyl]-S-phenylglycine t-butyl ester). Ectopic activation of Notch in Tg(hsp70::Gal4; UAS::NICD)(NICD) embryos led to a reduced CS post heat-shock induction. To further examine the link between the tbx2a/b genes and Notch during CS formation, DAPT treatment was used to block Notch activity in tbx2a/b deficient embryos, and tbx2a/b knockdown was performed in NICD transgenic embryos. Both manipulations caused similar CS expansions, indicating that Notch functions upstream of the tbx2a/b genes to suppress CS ontogeny. Taken together, these data reveal for the first time that tbx2a/b mitigate pronephros segmentation downstream of RA, and that interplay between Notch signaling and tbx2a/b regulate CS formation, thus providing several novel insights into the genetic regulatory networks that influence these lineages.

摘要

简化且基因保守的斑马鱼前肾是研究肾单位节段发育过程中细胞命运决定的隐秘过程以及构成斯坦尼氏体(CS)的相关内分泌细胞起源的优秀模型。通过全胚胎原位杂交,我们发现属于T-box转录因子家族的斑马鱼基因t-box 2a(tbx2a)和t-box 2b(tbx2b)的转录本在产生远端前肾和CS的尾侧中间中胚层祖细胞中表达。tbx2a、tbx2b或两者tbx2a/b的缺失会减小远端晚期(DL)节段的大小,同时伴有近端曲管节段(PCT)扩张。此外,tbx2a/b缺失导致CS簇显著增大。在具有from beyond(fby)突变的胚胎中也观察到了这些表型,该突变在tbx2b的T-box序列中编码一个提前的终止密码子。相反,在野生型胚胎中过表达tbx2a和tbx2b会使DL节段扩张,其中细胞与相邻的DE混合,同时也减少了CS细胞数量,但值得注意的是,并未改变PCT的发育——这提供了独立的证据表明tbx2a和tbx2b各自对于促进DL命运和抑制CS发生是必要且充分的。上位性研究表明tbx2a在tbx2b的上游起作用,以调节DL和CS的命运,并且可能还有其他靶点。视黄酸(RA)添加和抑制研究表明,tbx2a和tbx2b受RA信号通路的负调控。有趣的是,当用化学物质DAPT(N-[N-(3,5-二氟苯乙酰基)-L-丙氨酰基]-S-苯甘氨酸叔丁酯)阻断Notch信号通路时,也会出现典型的tbx2a/b缺失导致的CS细胞扩张。在Tg(hsp70::Gal4; UAS::NICD)(NICD)胚胎中异位激活Notch会导致热休克诱导后CS减少。为了进一步研究tbx2a/b基因与Notch在CS形成过程中的联系,使用DAPT处理来阻断tbx2a/b缺陷胚胎中的Notch活性,并在NICD转基因胚胎中进行tbx2a/b基因敲低。这两种操作都导致了类似的CS扩张,表明Notch在tbx2a/b基因的上游起作用,以抑制CS的发生。综上所述,这些数据首次揭示tbx2a/b在RA下游减轻前肾节段化,并且Notch信号通路与tbx2a/b之间的相互作用调节CS形成,从而为影响这些谱系的遗传调控网络提供了几个新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8478/5955707/c66629676bfe/nihms964669f1.jpg

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