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Projection Structure of a N-Terminal Deletion Mutant of Connexin 26 Channel with Decreased Central Pore Density

机译:连接蛋白26通道N末端缺失突变体的中心孔密度降低的投影结构

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摘要

Gated gap junction channels are important cellular conduits for establishing and maintaining intercellular communication. The three-dimensional structure of a mutant human connexin 26 (Cx26M34A) by electron cryocrystallography revealed a plug-like density in the channel pore suggesting that physical blockage of the pore may be one mechanism of closure (Oshima et al. 2007, Proc Natl Acad Sci USA 104: 10034–10039). However, it remains to be determined what part of the sequence contributes to the plug. Here, we present the projection structure of an N-terminus deletion of Cx26M34A missing amino acids 2 to 7 (Cx26M34Adel2-7) crystallized in the same two-dimensional crystal form. A 10 -A resolution projection map of Cx26M34Adel2-7 revealed that the plug density was dramatically reduced in comparison with that found in full-length Cx26 channel. The difference map between the deletion and full-length Cx26M34A channels strongly suggests that the N-terminus of connexin contributes to the plug for the physical closure of gap junction channels.
机译:门控间隙连接通道是建立和维持细胞间通讯的重要细胞导管。通过电子冷冻晶体学分析的突变型人连接蛋白26(Cx26M34A)的三维结构揭示了通道孔中的塞状密度,表明孔的物理堵塞可能是封闭的一种机制(Oshima et al。2007,Proc Natl Acad美国科学104:10034-10039)。但是,仍有待确定序列的哪一部分对塞子起作用。在这里,我们介绍了Cx26M34A缺失的氨基酸2至7(Cx26M34Adel2-7)以相同的二维晶体形式结晶的N末端缺失的投影结构。 Cx26M34Adel2-7的10 A分辨率投影图显示,与在全长Cx26通道中发现的塞密度相比,塞密度显着降低。缺失和全长Cx26M34A通道之间的差异图强烈表明连接蛋白的N端有助于间隙连接通道的物理闭合。

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