Laboratory of Plant Physiology, Dipartimento di Scienze del Mare, Università Politecnica delle Marche, Via Brecce Bianche, 60123, Ancona, Italy.
J Bioenerg Biomembr. 2011 Dec;43(6):611-21. doi: 10.1007/s10863-011-9386-z. Epub 2011 Oct 12.
The proteins performing the activity of the inner membrane anion channel (IMAC) and its plant counterpart (PIMAC) are still unknown. Lurin et al. (Biochem J 348: 291-295, 2000) indicated that a chloride channel (CLC) protein corresponds to PIMAC activity in tobacco seedling mitochondria. In this study, we investigated: (i) the presence of a CLC protein in maize seedling mitochondria; (ii) the involvement of this protein in plant cold tolerance; and (iii) its possible role in PIMAC activity. We validated the presence of a CLC protein (ZmCLCc) in maize mitochondria by immunoassay using a polyclonal antibody against its C-terminus. The differential expression of the ZmCLCc protein in mitochondria was measured in seedlings of maize populations divergently selected for cold tolerance and grown at different temperatures. The ZmCLCc protein level was higher in cold stressed than in non-stressed growing conditions. Moreover, the ZmCLCc level showed a direct relationship with the cold sensitivity level of the populations under both growing conditions, suggesting that selection for cold tolerance induced a constitutive change of the ZmCLCc protein amount in mitochondria. The anti-ZmCLCc antibody inhibited (about 60%) the channel-mediated anion translocations by PIMAC, whereas the same antibody did not affect the free diffusion of potassium thiocyanide through the inner mitochondrial membrane. For this reason, we conclude that the mitochondrial ZmCLCc protein can perform the PIMAC activity in maize seedlings.
执行内膜阴离子通道(IMAC)及其植物对应物(PIMAC)活性的蛋白质尚不清楚。Lurin 等人(Biochem J 348: 291-295, 2000)指出,氯离子通道(CLC)蛋白对应于烟草幼苗线粒体中的 PIMAC 活性。在这项研究中,我们研究了:(i)CLC 蛋白是否存在于玉米幼苗线粒体中;(ii)该蛋白是否参与植物的耐寒性;以及(iii)其在 PIMAC 活性中的可能作用。我们使用针对其 C 末端的多克隆抗体通过免疫测定法验证了玉米线粒体中 CLC 蛋白(ZmCLCc)的存在。通过在不同温度下生长的耐寒性和非耐寒性玉米群体幼苗中测量 ZmCLCc 蛋白在线粒体中的差异表达来测量。ZmCLCc 蛋白水平在冷胁迫下高于非胁迫生长条件下。此外,ZmCLCc 水平与两种生长条件下种群的冷敏感性水平呈直接关系,表明对耐寒性的选择诱导了线粒体中 ZmCLCc 蛋白数量的组成型变化。抗 ZmCLCc 抗体抑制了 PIMAC 介导的阴离子转运(约 60%),而相同的抗体不影响钾硫氰酸盐在内膜中的自由扩散。因此,我们得出结论,线粒体 ZmCLCc 蛋白可以在玉米幼苗中发挥 PIMAC 活性。