Wallis Michael
Biochemistry and Biomedicine Group, School of Life Sciences, University of Sussex, Brighton BN1 9QG, UK.
Gen Comp Endocrinol. 2018 May 1;260:100-106. doi: 10.1016/j.ygcen.2018.01.005. Epub 2018 Jan 12.
The POU1F1 (Pit-1) transcription factor is important in regulating expression of growth hormone, prolactin and TSH β-subunit, and controlling development of the anterior pituitary cells in which these hormones are produced. POU1F1 is a conserved protein comprising three main domains, an N-terminal transcription activation domain (TAD), a POU-specific domain and a C-terminal homeodomain. Within the TAD, a β-domain can be inserted by alternative splicing, giving an extended 'β-variant' with altered properties. Here sequence data from over 100 species were used to assess the variability of POU1F1 in mammals. This showed that the POU-specific domain and homeodomain are very strongly conserved, and that the TAD is somewhat less conserved, as are linker and hinge regions between these main domains. On the other hand, the β-domain is very variable, apparently evolving at a rate not significantly different from that expected for unconstrained, neutral evolution. In several species stop and/or frameshift mutations within the β-domain would prevent expression of the β-variant as a functional protein. In most species expression of the β-variant is low (<5% of total POU1F1 expression). The rate of evolution of POU1F1 in mammals shows little variation, though the lineage leading to dog does show an episode of accelerated change. This comparative genomics study suggests that in most mammalian species POU1F1 variants produced by alternative splicing may have little physiological significance.
POU1F1(Pit-1)转录因子在调节生长激素、催乳素和促甲状腺激素β亚基的表达以及控制产生这些激素的垂体前叶细胞的发育中起着重要作用。POU1F1是一种保守蛋白,由三个主要结构域组成,即N端转录激活结构域(TAD)、POU特异性结构域和C端同源结构域。在TAD内,可通过可变剪接插入一个β结构域,从而产生一种特性改变的延伸“β变体”。本文利用来自100多个物种的序列数据评估了POU1F1在哺乳动物中的变异性。结果表明,POU特异性结构域和同源结构域高度保守,而TAD的保守性稍低,这些主要结构域之间的连接区和铰链区也是如此。另一方面,β结构域变化很大,其进化速率显然与无约束的中性进化预期速率没有显著差异。在几个物种中,β结构域内的终止和/或移码突变会阻止β变体作为功能性蛋白表达。在大多数物种中,β变体的表达水平较低(<POU1F1总表达量的5%)。POU1F1在哺乳动物中的进化速率变化不大,尽管导致狗的谱系确实出现了一段加速变化的时期。这项比较基因组学研究表明,在大多数哺乳动物物种中,由可变剪接产生的POU1F1变体可能没有什么生理意义。