Lin J S, Eckert R, Kistler J, Donaldson P
School of Biological Sciences, University of Auckland, New Zealand.
Eur J Cell Biol. 1998 Aug;76(4):246-50. doi: 10.1016/s0171-9335(98)80002-2.
Gap junctions in the vertebrate lens exhibit spatial differences in pH gating: those in the cortical fibre cells close upon tissue acidification while those in the core region do not. It has been speculated that this difference in channel gating is a consequence of the cleavage of the connexins (Cx) that form the gap junction channels. We report the construction of a truncation mutant of ovine Cx50 which mimicks the cleavage in the intact lens. The construct when expressed in Xenopus oocytes results in the formation of functional channels. Comparison with full-length Cx50 revealed a significant reduction in the pH-sensitivity of the truncated form. This is the first evidence linking the non-uniform gating of gap junction channels in the lens with connexin cleavage. It also reveals how fibre cells in the core region remain connected despite the acidic environment caused by elevated lactate levels.
脊椎动物晶状体中的缝隙连接在pH门控方面表现出空间差异:皮质纤维细胞中的缝隙连接在组织酸化时关闭,而核心区域的则不会。据推测,通道门控的这种差异是形成缝隙连接通道的连接蛋白(Cx)裂解的结果。我们报告了一种绵羊Cx50截短突变体的构建,该突变体模拟了完整晶状体中的裂解情况。该构建体在非洲爪蟾卵母细胞中表达时会形成功能性通道。与全长Cx50相比,截短形式的pH敏感性显著降低。这是将晶状体中缝隙连接通道的非均匀门控与连接蛋白裂解联系起来的首个证据。它还揭示了尽管乳酸水平升高导致酸性环境,但核心区域的纤维细胞如何保持连接。