Quiroz Yobhana, Lopez Mauricio, Mavropoulos Anastasia, Motte Patrick, Martial Joseph A, Hammerschmidt Matthias, Muller Marc
Laboratory for Molecular Biology and Genetic Engineering, University of Cologne, D-50674 Cologne, Germany.
Mol Endocrinol. 2012 Jun;26(6):1014-27. doi: 10.1210/me.2011-1319. Epub 2012 Apr 27.
The pituitary is a complex gland comprising different cell types each secreting specific hormones. The extensive network of signaling molecules and transcription factors required for determination and terminal differentiation of specific cell types is still not fully understood. The SRY-like HMG-box (SOX) transcription factor Sox4 plays important roles in many developmental processes and has two homologs in zebrafish, Sox4a and Sox4b. We show that the sox4b gene is expressed in the pituitary anlagen starting at 24 h after fertilization (hpf) and later in the entire head region including the pituitary. At 48 hpf, sox4b mRNA colocalizes with that for TSH (tshβ), glycoprotein subunit α (gsuα), and the Zn finger transcription factor Gata2a. Loss of Sox4b function, using morpholino knockdown or expression of a dominant-negative Sox4 mutant, leads to a drastic decrease in tshβ and gsuα expression and reduced levels of gh, whereas other anterior pituitary gland markers including prl, slβ, pomc, and lim3 are not affected. Sox4b is also required for expression of gata2a in the pituitary. Knockdown of gata2a leads to decreased tshβ and gsuα expression at 48 hpf, similar to sox4b morphants. Injection of gata2a mRNA into sox4b morphants rescued tshβ and gsuα expression in thyrotrope cells. Finally, sox4b or gata2a knockdown causes a significant decrease of gonadotropin expression (lhβ and fshβ) at 4 d after fertilization. In summary, our results indicate that Sox4b is expressed in zebrafish during pituitary development and plays a crucial role in the differentiation of thyrotrope and gonadotrope cells through induction of gata2a expression in the developing pituitary.
垂体是一个复杂的腺体,由不同细胞类型组成,每种细胞类型分泌特定的激素。特定细胞类型的确定和终末分化所需的信号分子和转录因子的广泛网络仍未完全了解。SRY样HMG盒(SOX)转录因子Sox4在许多发育过程中发挥重要作用,在斑马鱼中有两个同源物,即Sox4a和Sox4b。我们发现sox4b基因在受精后24小时(hpf)开始在垂体原基中表达,随后在包括垂体在内的整个头部区域表达。在48 hpf时,sox4b mRNA与促甲状腺激素(tshβ)、糖蛋白亚基α(gsuα)和锌指转录因子Gata2a的mRNA共定位。使用吗啉代敲低或显性负性Sox4突变体的表达来丧失Sox4b功能,会导致tshβ和gsuα表达急剧下降以及生长激素水平降低,而其他垂体前叶标记物,包括催乳素(prl)、促肾上腺皮质激素β(slβ)、阿黑皮素原(pomc)和Lhx3,不受影响。Sox4b也是垂体中gata2a表达所必需的。敲低gata2a会导致48 hpf时tshβ和gsuα表达下降,类似于sox4b突变体。将gata2a mRNA注射到sox4b突变体中可挽救促甲状腺细胞中tshβ和gsuα的表达。最后,敲低sox4b或gata2a会导致受精后4天时促性腺激素表达(lhβ和fshβ)显著下降。总之,我们的结果表明,Sox4b在斑马鱼垂体发育过程中表达,并通过诱导发育中的垂体中gata2a的表达,在促甲状腺细胞和促性腺细胞的分化中起关键作用。