Chelur Dattananda S, Ernstrom Glen G, Goodman Miriam B, Yao C Andrea, Chen Lei, O' Hagan Robert, Chalfie Martin
Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Nature. 2002 Dec 12;420(6916):669-73. doi: 10.1038/nature01205.
Mechanosensory transduction in touch receptor neurons is believed to be mediated by DEG/ENaC (degenerin/epithelial Na+ channel) proteins in nematodes and mammals. In the nematode Caenorhabditis elegans, gain-of-function mutations in the degenerin genes mec-4 and mec-10 (denoted mec-4(d) and mec-10(d), respectively) cause degeneration of the touch cells. This phenotype is completely suppressed by mutation in a third gene, mec-6 (refs 3, 4), that is needed for touch sensitivity. This last gene is also required for the function of other degenerins. Here we show that mec-6 encodes a single-pass membrane-spanning protein with limited similarity to paraoxonases, which are implicated in human coronary heart disease. This gene is expressed in muscle cells and in many neurons, including the six touch receptor neurons. MEC-6 increases amiloride-sensitive Na+ currents produced by MEC-4(d)/MEC-10(d) by approximately 30-fold, and functions synergistically with MEC-2 (a stomatin-like protein that regulates MEC-4(d)/MEC-10(d) channel activity) to increase the currents by 200-fold. MEC-6 physically interacts with all three channel proteins. In vivo, MEC-6 co-localizes with MEC-4, and is required for punctate MEC-4 expression along touch-neuron processes. We propose that MEC-6 is a part of the degenerin channel complex that may mediate mechanotransduction in touch cells.
在触觉受体神经元中,机械感觉转导被认为是由线虫和哺乳动物中的DEG/ENaC(退化蛋白/上皮钠通道)蛋白介导的。在线虫秀丽隐杆线虫中,退化蛋白基因mec-4和mec-10的功能获得性突变(分别表示为mec-4(d)和mec-10(d))会导致触觉细胞退化。这种表型被第三个基因mec-6的突变完全抑制(参考文献3、4),mec-6是触觉敏感性所必需的。最后这个基因对于其他退化蛋白的功能也是必需的。我们在此表明,mec-6编码一种单次跨膜蛋白,与对氧磷酶有有限的相似性,对氧磷酶与人冠状动脉心脏病有关。该基因在肌肉细胞和许多神经元中表达,包括六个触觉受体神经元。MEC-6使由MEC-4(d)/MEC-10(d)产生的amiloride敏感钠电流增加约30倍,并与MEC-2(一种调节MEC-4(d)/MEC-10(d)通道活性的类stomatin蛋白)协同作用,使电流增加200倍。MEC-6与所有三种通道蛋白发生物理相互作用。在体内,MEC-6与MEC-4共定位,并且是沿触觉神经元突起的点状MEC-4表达所必需的。我们提出,MEC-6是退化蛋白通道复合物的一部分,可能介导触觉细胞中的机械转导。