Mallouk N, Ildefonse M, Pagès F, Ragno M, Bennett N
Département de Biologie Moléculaire et Structurale, Laboratoire de Biophysique Moléculaire at Cellulaire (URA CNRS 520), C.E.A.-Grenoble, Grenoble, France.
J Membr Biol. 2002 Jan 15;185(2):129-36. doi: 10.1007/s00232-001-0119-9. Epub 2002 Feb 5.
A mutant of the a subunit of the retinal rod cyclic GMP-gated channel, [Arg654(1-bp del)], corresponding to a truncated alphaR654Dstop subunit, was previously described in patients with retinitis pigmentosa: when expressed in HEK-293 cells, this mutated a subunit was retained inside the cell, but had normal channel activity in one case where it reached the plasma membrane, indicating that the mechanism of targeting is altered by the mutation, but not the function of the channel. The corresponding mutants of the bovine rod channel (alphaR656D stop), and of the closely related olfactory neuron channel (alphaR632Dstop) alpha subunits were expressed in Xenopus oocytes and their activity was analyzed by patch-clamp. Like their human homologue, these two channels have no activity, and we show that their GFP fusion proteins are accumulated into intracellular compartments. The truncation alone or the R/D mutation alone do not prevent or modify channel activity, indicating that neither the R656 residue nor the C-terminal domain downstream of R656 is necessary for homomeric channel targeting and function. Several mutations of R656 and of the preceding residues in the R656Dstop mutant disclose that the motif responsible for the absence of channel activity is an endoplasmic reticulum retention signal (KXKXXstop) in which the nature of the residues in positions -1 and -4 is determinant.
视网膜视杆细胞环磷酸鸟苷门控通道α亚基的一个突变体[Arg654(1-bp del)],对应截短的αR654Dstop亚基,先前在色素性视网膜炎患者中已有描述:当在HEK-293细胞中表达时,这种突变的α亚基滞留在细胞内,但在一例到达质膜的情况下具有正常的通道活性,这表明靶向机制因突变而改变,但通道功能未受影响。牛视杆通道(αR656D stop)以及密切相关的嗅觉神经元通道(αR632Dstop)α亚基的相应突变体在非洲爪蟾卵母细胞中表达,并通过膜片钳分析其活性。与它们的人类同源物一样,这两种通道均无活性,并且我们发现它们的绿色荧光蛋白融合蛋白积聚在细胞内区室中。单独的截短或单独的R/D突变均不会阻止或改变通道活性,这表明R656残基及其下游的C末端结构域对于同聚体通道的靶向和功能均非必需。R656Dstop突变体中R656及其前面残基的几个突变表明,导致通道无活性的基序是一个内质网滞留信号(KXKXXstop),其中-1和-4位残基的性质起决定性作用。