Verbavatz J M, Ma T, Gobin R, Verkman A S
Service de Biologie Cellulaire, CEA/Saclay, Gif-sur-Yvette, France.
J Cell Sci. 1997 Nov;110 ( Pt 22):2855-60. doi: 10.1242/jcs.110.22.2855.
Freeze-fracture electron microscopy (FFEM) of kidney collecting duct, muscle, astrocytes in brain, and other mammalian tissues has revealed regular square arrays of intramembrane particles called orthogonal arrays of particles (OAPs). Their possible role in membrane structure and transport have been proposed, and their absence or decrease has been noted in a variety of hereditary and acquired diseases. A transgenic mouse lacking water channel AQP4 was used to show that AQP4 is the OAP protein. FFEM was done on kidney, skeletal muscle, and brain from AQP4 wild-type [+/+], heterozygous [+/-] and knock-out [-/-] mice. The [-/-] mice did not express detectable AQP4 protein, but were grossly indistinguishable from [+/+] mice. FFEM was done on blinded samples of kidney, brain and muscle from 9 mice. In all 6 kidney samples from [+/+] and [+/-] mice, OAPs similar to those in AQP4-transfected CHO cells were found in basolateral membranes of collecting duct principal cells. In all muscle and brain samples from [+/+] and [+/-] mice, OAPs of identical ultrastructure to those in kidney were seen, but in smaller patch sizes. OAPs were not seen in any sample from [-/-] mice. Label-fracture analysis using a peptide-derived AQP4 polyclonal antibody showed immunogold labeling of OAPs in AQP4-expressing CHO cells. These studies provide direct evidence that AQP4 is required for formation of OAPs and is a component of OAPs, thus establishing the identity and function of OAPs.
对肾集合管、肌肉、脑星形胶质细胞及其他哺乳动物组织进行的冷冻断裂电子显微镜检查(FFEM)显示,存在一种称为颗粒正交阵列(OAPs)的规则方形排列的膜内颗粒。人们已经提出了它们在膜结构和运输中的可能作用,并且在多种遗传性和获得性疾病中都注意到它们的缺失或减少。利用一种缺乏水通道蛋白4(AQP4)的转基因小鼠来证明AQP4是OAP蛋白。对来自AQP4野生型[+/+]、杂合子[+/-]和基因敲除[-/-]小鼠的肾脏、骨骼肌和脑进行了FFEM检查。[-/-]小鼠未表达可检测到的AQP4蛋白,但在外观上与[+/+]小鼠没有明显区别。对9只小鼠的肾脏、脑和肌肉的盲样进行了FFEM检查。在来自[+/+]和[+/-]小鼠的所有6个肾脏样本中,在集合管主细胞的基底外侧膜中发现了与转染AQP4的中国仓鼠卵巢(CHO)细胞中相似的OAPs。在来自[+/+]和[+/-]小鼠的所有肌肉和脑样本中,都观察到了与肾脏中结构相同的超微结构的OAPs,但斑块尺寸较小。在来自[-/-]小鼠的任何样本中都未见到OAPs。使用肽衍生的AQP4多克隆抗体进行的标记断裂分析显示,在表达AQP4的CHO细胞中,OAPs有免疫金标记。这些研究提供了直接证据,表明AQP4是形成OAPs所必需的,并且是OAPs的一个组成部分,从而确定了OAPs的身份和功能。