Institute of Veterinary Physiology, Faculty of Veterinary Medicine, Freie Universität Berlin, Berlin, Germany.
PLoS One. 2018 Mar 1;13(3):e0193519. doi: 10.1371/journal.pone.0193519. eCollection 2018.
Absorption of ammonia from the gastrointestinal tract results in problems that range from hepatic encephalopathy in humans to poor nitrogen efficiency of cattle with consequences for the global climate. Previous studies on epithelia and cells from the native ruminal epithelium suggest functional involvement of the bovine homologue of TRPV3 (bTRPV3) in ruminal NH4+ transport. Since the conductance of TRP channels to NH4+ has never been studied, bTRPV3 was overexpressed in HEK-293 cells and investigated using the patch-clamp technique and intracellular calcium imaging. Control cells contained the empty construct. Divalent cations blocked the conductance for monovalent cations in both cell types, with effects higher in cells expressing bTRPV3. In bTRPV3 cells, but not in controls, menthol, thymol, carvacrol, or 2-APB stimulated whole cell currents mediated by Na+, Cs+, NH4+, and K+, with a rise in intracellular Ca2+ observed in response to menthol. While only 25% of control patches showed single-channel events (with a conductance of 40.8 ± 11.9 pS for NH4+ and 25.0 ± 5.8 pS for Na+), 90% of bTRPV3 patches showed much larger conductances of 127.8 ± 4.2 pS for Na+, 240.1 ± 3.6 pS for NH4+, 34.0 ± 1.7 pS for Ca2+, and ~ 36 pS for NMDG+. Open probability, but not conductance, rose with time after patch excision. In conjunction with previous research, we suggest that bTRPV3 channels may play a role in the transport of Na+, K+, Ca2+ and NH4+ across the rumen with possible repercussions for understanding the function of TRPV3 in other epithelia.
胃肠道吸收氨会导致一系列问题,从人类的肝性脑病到牛的氮效率降低,从而对全球气候产生影响。先前对天然瘤胃上皮的上皮细胞和细胞的研究表明,牛 TRPV3(bTRPV3)的同源物可能参与瘤胃 NH4+的转运。由于 TRP 通道对 NH4+的电导率从未被研究过,因此在 HEK-293 细胞中过表达 bTRPV3,并使用膜片钳技术和细胞内钙成像进行研究。对照细胞含有空载体。二价阳离子会阻止两种细胞类型中单价阳离子的电导率,而在表达 bTRPV3 的细胞中作用更高。在 bTRPV3 细胞中,但不在对照细胞中,薄荷醇、百里香酚、香芹酚或 2-APB 刺激由 Na+、Cs+、NH4+和 K+介导的整个细胞电流,并且观察到细胞内 Ca2+响应薄荷醇而升高。虽然只有 25%的对照片显示单通道事件(NH4+的电导率为 40.8±11.9 pS,Na+的电导率为 25.0±5.8 pS),但 90%的 bTRPV3 片显示出更大的电导率,Na+的电导率为 127.8±4.2 pS,NH4+的电导率为 240.1±3.6 pS,Ca2+的电导率为 34.0±1.7 pS,NMDG+的电导率约为 36 pS。开放概率而不是电导随片后时间的增加而增加。结合以前的研究,我们认为 bTRPV3 通道可能在 Na+、K+、Ca2+和 NH4+穿过瘤胃的转运中发挥作用,这可能对理解 TRPV3 在其他上皮细胞中的功能产生影响。