Cioffi Joseph A, Wackym P Ashley, Erbe Christy B, Gaggl Wolfgang, Popper Paul
Department of Otolaryngology and Communication Sciences, Medical College of Wisconsin, 9200 W. Wisconsin Avenue, Milwaukee, WI 53226-3596, USA.
Brain Res Mol Brain Res. 2005 Jun 13;137(1-2):89-97. doi: 10.1016/j.molbrainres.2005.02.024. Epub 2005 Apr 1.
GTP binding proteins play an important role in mediating signals transduced across the cell membrane by membrane-bound receptors. We previously described a partial sequence, termed Galphai2vest, obtained from rat vestibular tissue that was nearly identical to rat Galphai2. Using an experimental strategy to further characterize Galphai2vest (GenBank accession number AF189020) and identify other possible Galphai2-related transcripts expressed in the rat vestibular periphery, we employed a RecA-based gene enrichment protocol in place of conventional library screening techniques. We identified two novel Galphai2 splice variants, Galphai2(a) (GenBank accession number AY899210) and Galphai2(b) (GenBank accession number AY899211), that have most of exons 8 and 9 deleted, and exons 5 through 9 deleted, respectively. In situ hybridization studies were completed to determine the differential expression of Galphai2 between the vestibular primary afferent neurons and the vestibular end organs. Computer modeling and predicted 3D conformation of the wild type Galphai2 and the two splice variants were completed to evaluate the changes associated with the Gbetagamma and GTP binding sites. These two novel alternatively spliced isoforms of Galphai2 putatively encode truncated proteins that could serve unique roles in the physiology of the vestibular neuroepithelium. Galphai2vest was found to be a processed pseudogene.
GTP结合蛋白在介导膜结合受体跨细胞膜转导的信号中起重要作用。我们之前描述了一个从大鼠前庭组织中获得的部分序列,称为Galphai2vest,它与大鼠Galphai2几乎相同。为了进一步表征Galphai2vest(GenBank登录号AF189020)并鉴定在大鼠前庭外周表达的其他可能的Galphai2相关转录本,我们采用了基于RecA的基因富集方案来替代传统的文库筛选技术。我们鉴定出了两种新的Galphai2剪接变体,Galphai2(a)(GenBank登录号AY899210)和Galphai2(b)(GenBank登录号AY899211),它们分别缺失了大部分外显子8和9以及外显子5至9。完成了原位杂交研究以确定Galphai2在前庭初级传入神经元和前庭终器之间的差异表达。完成了野生型Galphai2和这两种剪接变体的计算机建模和预测三维构象,以评估与Gbetagamma和GTP结合位点相关的变化。这两种新的Galphai2可变剪接异构体可能编码截短的蛋白质,它们可能在前庭神经上皮的生理学中发挥独特作用。发现Galphai2vest是一个加工过的假基因。