Seymour Philip A
The Danish Stem Cell Center (DanStem), University of Copenhagen, Panum Institute, Blegdamsvej 3B, DK-2200, Copenhagen N, Denmark.
Rev Diabet Stud. 2014 Spring;11(1):51-83. doi: 10.1900/RDS.2014.11.51. Epub 2014 May 10.
Over the last decade, it has been discovered that the transcription factor Sox9 plays several critical roles in governing the development of the embryonic pancreas and the homeostasis of the mature organ. While analysis of pancreata from patients affected by the Sox9 haploinsufficiency syndrome campomelic dysplasia initially alluded to a functional role of Sox9 in pancreatic morphogenesis, transgenic mouse models have been instrumental in mechanistically dissecting such roles. Although initially defined as a marker and maintenance factor for pancreatic progenitors, Sox9 is now considered to fulfill additional indispensable functions during pancreogenesis and in the postnatal organ through its interactions with other transcription factors and signaling pathways such as Fgf and Notch. In addition to maintaining both multipotent and bipotent pancreatic progenitors, Sox9 is also required for initiating endocrine differentiation and maintaining pancreatic ductal identity, and it has recently been unveiled as a key player in the initiation of pancreatic cancer. These functions of Sox9 are discussed in this article, with special emphasis on the knowledge gained from various loss-of-function and lineage tracing mouse models. Also, current controversies regarding Sox9 function in healthy and injured adult pancreas and unanswered questions and avenues of future study are discussed.
在过去十年中,人们发现转录因子Sox9在胚胎胰腺发育及成熟器官的稳态维持中发挥着多个关键作用。虽然最初对患有Sox9单倍剂量不足综合征(即先天性软骨发育不全)患者的胰腺分析暗示了Sox9在胰腺形态发生中的功能作用,但转基因小鼠模型对于从机制上剖析这些作用起到了重要作用。尽管Sox9最初被定义为胰腺祖细胞的标志物和维持因子,但现在认为它在胰腺发生过程中以及出生后器官中通过与其他转录因子和信号通路(如Fgf和Notch)相互作用发挥额外的不可或缺的功能。除了维持多能和双能胰腺祖细胞外,Sox9对于启动内分泌分化和维持胰腺导管特性也是必需的,并且最近已被揭示为胰腺癌起始中的关键因子。本文讨论了Sox9的这些功能,特别强调了从各种功能丧失和谱系追踪小鼠模型中获得的知识。此外,还讨论了目前关于Sox9在健康和受损成年胰腺中的功能的争议以及未解决的问题和未来研究方向。