Brown Austin L, Liao Zhiwen, Goodman Miriam B
Biophysics Program, Stanford University, Stanford, CA 94305, USA.
J Gen Physiol. 2008 Jun;131(6):605-16. doi: 10.1085/jgp.200709910.
The ion channel formed by the homologous proteins MEC-4 and MEC-10 forms the core of a sensory mechanotransduction channel in Caenorhabditis elegans. Although the products of other mec genes are key players in the biophysics of transduction, the mechanism by which they contribute to the properties of the channel is unknown. Here, we investigate the role of two auxiliary channel subunits, MEC-2 (stomatin-like) and MEC-6 (paraoxonase-like), by coexpressing them with constitutively active MEC-4/MEC-10 heteromeric channels in Xenopus oocytes. This work extends prior work demonstrating that MEC-2 and MEC-6 synergistically increase macroscopic current. We use single-channel recordings and biochemistry to show that these auxiliary subunits alter function by increasing the number of channels in an active state rather than by dramatically affecting either single-channel properties or surface expression. We also use two-electrode voltage clamp and outside-out macropatch recording to examine the effects of divalent cations and proteases, known regulators of channel family members. Finally, we examine the role of cholesterol binding in the mechanism of MEC-2 action by measuring whole-cell and single-channel currents in MEC-2 mutants deficient in cholesterol binding. We suggest that MEC-2 and MEC-6 play essential roles in modulating both the local membrane environment of MEC-4/MEC-10 channels and the availability of such channels to be gated by force in vivo.
由同源蛋白MEC - 4和MEC - 10形成的离子通道构成了秀丽隐杆线虫感觉机械转导通道的核心。尽管其他mec基因的产物是转导生物物理学中的关键参与者,但它们对通道特性的贡献机制尚不清楚。在这里,我们通过在非洲爪蟾卵母细胞中与组成型活性MEC - 4/MEC - 10异源通道共表达,研究了两个辅助通道亚基MEC - 2(类stomatin)和MEC - 6(类对氧磷酶)的作用。这项工作扩展了先前的研究,证明MEC - 2和MEC - 6协同增加宏观电流。我们使用单通道记录和生物化学方法表明,这些辅助亚基通过增加处于活性状态的通道数量来改变功能,而不是通过显著影响单通道特性或表面表达。我们还使用双电极电压钳和外向式巨膜片记录来研究二价阳离子和蛋白酶(已知的通道家族成员调节剂)的作用。最后,我们通过测量缺乏胆固醇结合的MEC - 2突变体中的全细胞电流和单通道电流,研究胆固醇结合在MEC - 2作用机制中的作用。我们认为,MEC - 2和MEC - 6在调节MEC - 4/MEC - 10通道的局部膜环境以及此类通道在体内被力门控的可用性方面发挥着重要作用。