Suppr超能文献

钙离子感知转基因小鼠:平滑肌中的突触后信号传导

Ca2+-sensing transgenic mice: postsynaptic signaling in smooth muscle.

作者信息

Ji Guangju, Feldman Morris E, Deng Ke-Yu, Greene Kai Su, Wilson Jason, Lee Jane C, Johnston Robyn C, Rishniw Mark, Tallini Yvonne, Zhang Jin, Wier Winthrop G, Blaustein Mordecai P, Xin Hong-Bo, Nakai Junichi, Kotlikoff Michael I

机构信息

Department of Biomedical Sciences, College of Veterinary Medicine, Cornell University, Ithaca, NY 14853, USA.

出版信息

J Biol Chem. 2004 May 14;279(20):21461-8. doi: 10.1074/jbc.M401084200. Epub 2004 Feb 29.

Abstract

Genetically encoded signaling proteins provide remarkable opportunities to design and target the expression of molecules that can be used to report critical cellular events in vivo, thereby markedly extending the scope and physiological relevance of studies of cell function. Here we report the development of a transgenic mouse expressing such a reporter and its use to examine postsynaptic signaling in smooth muscle. The circularly permutated, Ca2+-sensing molecule G-CaMP (Nakai, J., Ohkura, M., and Imoto, K. (2001) Nat. Biotechnol. 19, 137-141) was expressed in vascular and non-vascular smooth muscle and functioned as a lineage-specific intracellular Ca2+ reporter. Detrusor tissue from these mice was used to identify two separate types of postsynaptic Ca2+ signals, mediated by distinct neurotransmitters. Intrinsic nerve stimulation evoked rapid, whole-cell Ca2+ transients, or "Ca2+ flashes," and slowly propagating Ca2+ waves. We show that Ca2+ flashes occur through P2X receptor stimulation and ryanodine receptor-mediated Ca2+ release, whereas Ca2+ waves arise from muscarinic receptor stimulation and inositol trisphosphate-mediated Ca2+ release. The distinct ionotropic and metabotropic postsynaptic Ca2+ signals are related at the level of Ca2+ release. Importantly, individual myocytes are capable of both postsynaptic responses, and a transition between Ca2+ -induced Ca2+ release and inositol trisphosphate waves occurs at higher synaptic inputs. Ca2+ signaling mice should provide significant advantages in the study of processive biological signaling.

摘要

基因编码的信号蛋白为设计和靶向分子表达提供了显著机遇,这些分子可用于报告体内关键细胞事件,从而显著扩展细胞功能研究的范围和生理相关性。在此,我们报告了一种表达此类报告基因的转基因小鼠的开发及其用于检测平滑肌突触后信号的情况。环状排列的、Ca2+ 传感分子 G-CaMP(中井健、大仓真、井本健一(2001 年)《自然生物技术》19 卷,137 - 141 页)在血管和平滑肌中表达,并作为谱系特异性细胞内 Ca2+ 报告基因发挥作用。来自这些小鼠的逼尿肌组织用于识别由不同神经递质介导的两种不同类型的突触后 Ca2+ 信号。内在神经刺激引发快速的全细胞 Ca2+ 瞬变,即“Ca2+ 闪光”,以及缓慢传播的 Ca2+ 波。我们表明,Ca2+ 闪光通过 P₂X 受体刺激和兰尼碱受体介导的 Ca2+ 释放发生,而 Ca2+ 波源于毒蕈碱受体刺激和肌醇三磷酸介导的 Ca2+ 释放。不同的离子型和代谢型突触后 Ca2+ 信号在 Ca2+ 释放水平上相关。重要的是,单个肌细胞能够产生两种突触后反应,并且在较高的突触输入时会发生从 Ca2+ 诱导的 Ca2+ 释放到肌醇三磷酸波的转变。Ca2+ 信号小鼠在进行性生物信号研究中应具有显著优势。

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