Lamba Pankaj, Hjalt Tord A, Bernard Daniel J
Department of Pharmacology and Therapeutics, McGill University, 3655 Promenade Sir William Osler, Montreal, Quebec H3G 1Y6, Canada.
BMC Mol Biol. 2008 Mar 28;9:31. doi: 10.1186/1471-2199-9-31.
Members of the Paired-like homeodomain transcription factor (PITX) gene family, particularly PITX1 and PITX2, play important roles in normal development and in differentiated cell functions. Three major isoforms of PITX2 were previously reported to be produced through both alternative mRNA splicing (PITX2A and PITX2B) and alternative promoter usage (PITX2C). The proteins derived from these mRNAs contain identical homeodomain and carboxyl termini. Differences in the amino-termini of the proteins may confer functional differences in some contexts.
Here, we report the identification of two novel PITX2 isoforms. First, we demonstrate that the Pitx2c mRNA generates two protein products, PITX2Calpha and PITX2Cbeta, via alternative translation initiation. Second, we identified a novel mRNA splice variant, Pitx2b2, which uses the same 5' splice donor in intron 2 as Pitx2b (hereafter referred to as Pitx2b1), but employs an alternative 3' splice acceptor, leading to an in-frame deletion of 39 base pairs relative to Pitx2b1. Pitx2b2 mRNA is expressed in both murine and human pituitary. The data show that in a murine gonadotrope cell line and adult murine pituitary what was previously thought to be PITX2B1 is actually PITX2Cbeta, or perhaps PITX2B2. PITX2B1 is expressed at lower levels than previously thought. PITX2Cbeta and PITX2B2 activate gonadotrope-specific gene promoter-reporters similarly to known PITX2 isoforms.
We have identified and characterized two novel isoforms of PITX2, generated by alternative translation initiation (PITX2Cbeta) and alternative mRNA splicing (PITX2B2). These proteins show similar DNA binding and trans-activation functions as other PITX2 isoforms in vitro, though their conservation across species suggests that they may play distinct, as yet unidentified, roles in vivo.
成对样同源结构域转录因子(PITX)基因家族的成员,尤其是PITX1和PITX2,在正常发育和分化细胞功能中发挥重要作用。先前报道PITX2的三种主要异构体是通过可变mRNA剪接(PITX2A和PITX2B)和可变启动子使用(PITX2C)产生的。源自这些mRNA的蛋白质包含相同的同源结构域和羧基末端。在某些情况下,蛋白质氨基末端的差异可能导致功能差异。
在此,我们报告了两种新型PITX2异构体的鉴定。首先,我们证明Pitx2c mRNA通过可变翻译起始产生两种蛋白质产物,即PITX2Calpha和PITX2Cbeta。其次,我们鉴定了一种新型mRNA剪接变体Pitx2b2,它在第2内含子中使用与Pitx2b(以下称为Pitx2b1)相同的5'剪接供体,但采用了一个可变的3'剪接受体,导致相对于Pitx2b1有39个碱基对的框内缺失。Pitx2b2 mRNA在小鼠和人类垂体中均有表达。数据表明,在小鼠促性腺激素细胞系和成年小鼠垂体中,以前认为的PITX2B1实际上是PITX2Cbeta,或者可能是PITX2B2。PITX2B1的表达水平低于先前的认识。PITX2Cbeta和PITX2B2与已知的PITX2异构体类似地激活促性腺激素特异性基因启动子-报告基因。
我们已经鉴定并表征了两种新型的PITX2异构体,它们分别通过可变翻译起始(PITX2Cbeta)和可变mRNA剪接(PITX2B2)产生。这些蛋白质在体外显示出与其他PITX2异构体相似的DNA结合和反式激活功能,尽管它们在物种间的保守性表明它们可能在体内发挥独特的、尚未明确的作用。