Zhang L, Franzini-Armstrong C, Ramesh V, Jones L R
Department of Medicine, Indiana University School of Medicine, Indianapolis, IN 46202, USA.
J Mol Cell Cardiol. 2001 Feb;33(2):233-47. doi: 10.1006/jmcc.2000.1295.
Junctin is a 26 kDa membrane protein that binds to calsequestrin, triadin, and ryanodine receptors (RyRs) within the junctional sarcoplasmic reticulum of calcium release units. The sequence of junctin includes a short N-terminal cytoplasmic domain a single transmembrane domain, and a highly charged C-terminal domain located in the sarcoplasmic reticulum lumen. Dog and mouse junctins are highly conserved at the transmembrane domains, but the luminal domains are more divergent. To probe the contribution of junctin to the architecture of calcium release units in heart, we engineered transgenic mice overexpressing canine junctin and examined the left ventricular myocardium by electron microscopy. Overall architecture of calcium release units is similar in control myocardium and in myocardium overexpressing junctin by 5-10-fold. In both myocardia, junctional SR cisternae are closely associated with exterior membranes (plasmalemma and transverse tubules). The cisternae are flat; they contain a string of calsequestrin beads and are lined by a row of feet, or RyRs, on the side facing the exterior membranes. T tubule surface density, measured as the perimeter of T tubule profiles v area of section, is the same in transgenic and control myocardia (305 v 289 nm/nm(2)). Three changes affecting the junctional SR architecture are apparent in the myocardium overexpressing junctin. One is a more tightly zippered appearance of the junctional SR cisternae. The width of the junctional SR is narrower and less variable in overexpressing than in control myocardium and the calsequestrin content is more compact. A second change is the extension of zippered junctional SR domains to non-junctional regions, which we term "frustrated" junctional SR. A third change is an increase in the extent of association between SR and T tubules. In junctin overexpressing myocardium junctional SR cisternae cover approximately 45% of the surface of all T tubule profiles, while in control myocardium the coverage approximately 30%. Junctional associations between SR and T tubules are increased in size. We conclude that the increase in junctin expression affects the packing of calsequestrin in the junctional SR and facilitates the association of SR and T tubules.
连接蛋白是一种26 kDa的膜蛋白,它在钙释放单元的连接肌浆网内与肌集钙蛋白、三联蛋白和兰尼碱受体(RyRs)结合。连接蛋白的序列包括一个短的N端胞质结构域、一个单一的跨膜结构域和一个位于肌浆网腔中的高度带电的C端结构域。狗和小鼠的连接蛋白在跨膜结构域高度保守,但腔结构域差异较大。为了探究连接蛋白对心脏钙释放单元结构的作用,我们构建了过表达犬连接蛋白的转基因小鼠,并通过电子显微镜检查左心室心肌。在对照心肌和过表达连接蛋白5 - 10倍的心肌中,钙释放单元的整体结构相似。在两种心肌中,连接肌浆网池与外部膜(质膜和横管)紧密相连。这些池是扁平的;它们含有一串肌集钙蛋白珠,并且在面向外部膜的一侧排列着一排脚,即RyRs。以横管轮廓周长与切片面积衡量的横管表面密度,在转基因心肌和对照心肌中相同(305对289 nm/nm²)。在过表达连接蛋白的心肌中,有三个影响连接肌浆网结构的变化很明显。一个是连接肌浆网池的拉链状外观更紧密。与对照心肌相比,过表达心肌中连接肌浆网的宽度更窄且变化更小,肌集钙蛋白含量更紧密。第二个变化是拉链状连接肌浆网结构域延伸到非连接区域,我们将其称为“受阻”连接肌浆网。第三个变化是肌浆网与横管之间的关联程度增加。在过表达连接蛋白的心肌中,连接肌浆网池覆盖了所有横管轮廓表面的约45%,而在对照心肌中覆盖率约为30%。肌浆网与横管之间的连接关联在大小上增加。我们得出结论,连接蛋白表达的增加影响了连接肌浆网中肌集钙蛋白的堆积,并促进了肌浆网与横管的关联。