Patzek Sophie, Liu Zhe, de la O Sean, Chang Sean, Byrnes Lauren E, Zhang Xiuqin, Ornitz David M, Sneddon Julie B
Department of Cell and Tissue Biology, University of California, San Francisco, San Francisco, CA 94143, USA.
Department of Anatomy, University of California, San Francisco, San Francisco, CA 94143, USA.
iScience. 2023 Mar 25;26(4):106500. doi: 10.1016/j.isci.2023.106500. eCollection 2023 Apr 21.
Pancreatic development requires spatially and temporally controlled expression of growth factors derived from mesenchyme. Here, we report that in mice the secreted factor Fgf9 is expressed principally by mesenchyme and then mesothelium during early development, then subsequently by both mesothelium and rare epithelial cells by E12.5 and onwards. Global knockout of the gene resulted in the reduction of pancreas and stomach size, as well as complete asplenia. The number of early Pdx1+ pancreatic progenitors was reduced at E10.5, as was proliferation of mesenchyme at E11.5. Although loss of Fgf9 did not interfere with differentiation of later epithelial lineages, single-cell RNA-Sequencing identified transcriptional programs perturbed upon loss of during pancreatic development, including loss of the transcription factor . Lastly, we identified conserved expression patterns of and receptors in human fetal pancreas, suggesting that expressed by pancreatic mesenchyme may similarly affect the development of the human pancreas.
胰腺发育需要间充质来源的生长因子在空间和时间上受到控制的表达。在此,我们报告在小鼠中,分泌因子Fgf9在早期发育期间主要由间充质然后由间皮表达,然后在E12.5及以后由间皮和罕见的上皮细胞共同表达。该基因的整体敲除导致胰腺和胃的大小减小,以及完全无脾。在E10.5时早期Pdx1 +胰腺祖细胞的数量减少,在E11.5时间充质的增殖也减少。虽然Fgf9的缺失并不干扰后期上皮谱系的分化,但单细胞RNA测序确定了胰腺发育过程中该基因缺失时受到干扰的转录程序,包括转录因子的缺失。最后,我们确定了人类胎儿胰腺中该基因及其受体的保守表达模式,表明胰腺间充质表达的该基因可能同样影响人类胰腺的发育。