Suppr超能文献

大鼠TRPC4一种新型剪接变体的克隆与功能表达

Cloning and functional expression of a novel splice variant of rat TRPC4.

作者信息

Satoh Eisaku, Ono Kyoichi, Xu Feng, Iijima Toshihiko

机构信息

Department of Pharmacology, Akita University School of Medicine, Japan.

出版信息

Circ J. 2002 Oct;66(10):954-8. doi: 10.1253/circj.66.954.

Abstract

Transient receptor potential protein 4 (TRPC4) has been identified as a candidate for the capacitative calcium entry (CCE) channels, but its functional role is still controversial. Using a RT-PCR technique, a novel isoform of TRPC4, designated rTRPC4gamma, was isolated. It was nearly identical to full-length rTRPC4 (rTRPC4alpha), except that it lacked 53 nucleotides that correspond to the predicted linker between the second and third transmembrane domain of rTRPC4alpha, and its mRNA was expressed in brain and heart. This splice variant encoded a potential protein of 400 residues that consists of an amino-terminal cytoplasmic domain and 2 transmembrane domains by a frameshift mutation. When rTRPC4gamma cDNA was transiently transfected to HEK-293 cells, thapsigargin (TG)-induced Ca2+ entry was suppressed significantly. By contrast, expression of rTRPC4 a did not affect TG-induced Ca2+ entry. To investigate the subcellular localization, plasmids were constructed with green fluorescence protein (GFP) as an amino-terminal fusion to rTRPC4 variants. GFP-rTRPC4gamma fusion protein, unlike GFP-rTRPC4alpha, was localized to the cytoplasm as well as plasma membrane. These results suggest that rTRPC4gamma may play a modulatory role in CCE channel activity in the brain and heart.

摘要

瞬时受体电位蛋白4(TRPC4)已被确定为容量性钙内流(CCE)通道的一个候选蛋白,但其功能作用仍存在争议。利用逆转录聚合酶链反应(RT-PCR)技术,分离出了一种新型的TRPC4亚型,命名为rTRPC4γ。它与全长rTRPC4(rTRPC4α)几乎相同,只是缺少了53个核苷酸,这些核苷酸对应于rTRPC4α第二个和第三个跨膜结构域之间预测的连接区,并且其mRNA在脑和心脏中表达。这种剪接变体通过移码突变编码了一个由400个残基组成的潜在蛋白,该蛋白由一个氨基末端胞质结构域和两个跨膜结构域组成。当将rTRPC4γ cDNA瞬时转染到HEK-293细胞中时,毒胡萝卜素(TG)诱导的Ca2+内流被显著抑制。相比之下,rTRPC4α的表达并不影响TG诱导的Ca2+内流。为了研究亚细胞定位,构建了以绿色荧光蛋白(GFP)作为氨基末端与rTRPC4变体融合的质粒。与GFP-rTRPC4α不同,GFP-rTRPC4γ融合蛋白定位于细胞质以及质膜。这些结果表明,rTRPC4γ可能在脑和心脏的CCE通道活性中发挥调节作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验