Grosely Rosslyn, Kieken Fabien, Sorgen Paul L
Department of Biochemistry and Molecular Biology, University of Nebraska Medical Center, Omaha, NE 68198, USA.
Biomol NMR Assign. 2013 Oct;7(2):299-303. doi: 10.1007/s12104-012-9432-8. Epub 2012 Oct 13.
Gap junctions are specialized membrane channels that enable coordination of cellular functions and whole-organ responses by facilitating both molecular and electrical communication between neighboring cells. Connexin43 (Cx43) is the most widely expressed and well-studied gap junction protein. In the heart, Cx43 is essential for normal cardiac development and function. Studies using a soluble version of the Cx43 carboxyl-terminal domain (Cx43CT; S255-I382) have established the central role it plays in channel regulation. However, in purifying and characterizing a more 'native-like' construct (Cx43CT attached to the fourth transmembrane domain (TM4-Cx43CT; D196-I382)), we have identified that the TM4-Cx43CT is a better model than the soluble Cx43CT to further investigate the mechanisms governing Cx43 channel regulation. Here, we report the backbone (1)H, (15)N, and (13)C assignments and predicted secondary structure of the TM4-Cx43CT. Assignment of the TM4-Cx43CT is a key step towards a better understanding of the structural basis of Cx43 regulation, which will lead to improved strategies for modulation of junctional communication that has been altered due to disease or ischemic injury.
间隙连接是一种特殊的膜通道,通过促进相邻细胞之间的分子和电信号通讯,实现细胞功能和全器官反应的协调。连接蛋白43(Cx43)是表达最广泛且研究最深入的间隙连接蛋白。在心脏中,Cx43对正常心脏发育和功能至关重要。使用Cx43羧基末端结构域的可溶性版本(Cx43CT;S255 - I382)进行的研究已证实其在通道调节中发挥的核心作用。然而,在纯化和表征一种更“天然样”的构建体(连接到第四个跨膜结构域的Cx43CT(TM4 - Cx43CT;D196 - I382))时,我们发现TM4 - Cx43CT比可溶性Cx43CT是进一步研究Cx43通道调节机制的更好模型。在此,我们报告TM4 - Cx43CT的主链(1)H、(15)N和(13)C归属以及预测的二级结构。TM4 - Cx43CT的归属是更好地理解Cx43调节结构基础的关键一步,这将带来改进的策略,用于调节因疾病或缺血性损伤而改变的连接通讯。