Immune Disease Institute and Program in Cellular and Molecular Medicine, Children's Hospital Boston, 200 Longwood Avenue, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2010 Mar 16;107(11):4896-901. doi: 10.1073/pnas.1001169107. Epub 2010 Mar 1.
ORAI1 is the pore-forming subunit of the calcium release-activated calcium (CRAC) channel, a store-operated channel that is central to Ca(2+) signaling in mammalian cells. Electrophysiological data have shown that the acidic residues E106 in transmembrane helix 1 (TM1) and E190 in TM3 contribute to the high selectivity of ORAI1 channels for Ca(2+). We have examined the pore architecture of the ORAI1 channel using ORAI1 proteins engineered to contain either one or two cysteine residues. Disulfide cross-linking shows that ORAI1 assembles as a tetramer or a higher oligomer with TM1 centrally located. Cysteine side chains projecting from TM1 at position 88, 95, 102, or 106 cross-link efficiently to the corresponding side chain in a second ORAI1 monomer. Cysteine residues at position 190 or at surrounding positions in TM3 do not cross-link. We conclude that E106 residues in wild-type ORAI1 are positioned to form a Ca(2+) binding site in the channel pore and that E190 interacts less directly with ions traversing the pore. The cross-linking data further identify a relatively rigid segment of TM1 adjacent to E106 that is likely to contribute to the selectivity filter.
ORAI1 是钙释放激活钙 (CRAC) 通道的形成孔亚基,是哺乳动物细胞中钙信号的核心的一种储存操纵通道。电生理数据表明,跨膜螺旋 1 (TM1) 中的酸性残基 E106 和 TM3 中的 E190 有助于 ORAI1 通道对 Ca(2+) 的高选择性。我们使用工程化的 ORAI1 蛋白来研究 ORAI1 通道的孔结构,这些蛋白含有一个或两个半胱氨酸残基。二硫键交联表明,ORAI1 以四聚体或更高的寡聚体形式组装,TM1 位于中心位置。从 TM1 的位置 88、95、102 或 106 处伸出的半胱氨酸侧链可有效地与第二个 ORAI1 单体中的相应侧链交联。TM3 中位置 190 或周围位置的半胱氨酸残基不交联。我们得出结论,野生型 ORAI1 中的 E106 残基定位于通道孔中形成 Ca(2+)结合位点,而 E190 与穿过孔的离子的相互作用不那么直接。交联数据进一步确定了 TM1 中与 E106 相邻的相对刚性片段,该片段可能有助于选择性过滤器。