Inaba M, Yawata A, Koshino I, Sato K, Takeuchi M, Takakuwa Y, Manno S, Yawata Y, Kanzaki A, Sakai J, Ban A, Ono K, Maede Y
Department of Veterinary Clinical Pathobiology, Faculty of Agriculture, The University of Tokyo, Japan.
J Clin Invest. 1996 Apr 15;97(8):1804-17. doi: 10.1172/JCI118610.
We studied bovine subjects that exhibited a moderate uncompensated anemia with hereditary spherocytosis inherited in an autosomal incompletely dominant mode and retarded growth. Based on the results of SDS-PAGE, immunoblotting, and electron microscopic analysis by the freeze fracture method, we show here that the proband red cells lacked the band 3 protein completely. Sequence analysis of the proband band 3 cDNA and genomic DNA showed a C --> T substitution resulting in a nonsense mutation (CGA --> TGA; Arg --> Stop) at the position corresponding to codon 646 in human red cell band 3 cDNA. The proband red cells were deficient in spectrin, ankyrin, actin, and protein 4.2, resulting in a distorted and disrupted membrane skeletal network with decreased density. Therefore, the proband red cell membranes were extremely unstable and showed the loss of surface area in several distinct ways such as invagination, vesiculation, and extrusion of microvesicles, leading to the formation of spherocytes. Total deficiency of band 3 also resulted in defective Cl-/HCO3- exchange, causing mild acidosis with decreases in the HCO3- concentration and total CO2 in the proband blood. Our results demonstrate that band 3 indeed contributes to red cell membrane stability, CO2 transport, and acid-base homeostasis, but is not always essential to the survival of this mammal.
我们研究了患有中度失代偿性贫血且伴有遗传性球形红细胞增多症的牛科动物,该病症以常染色体不完全显性模式遗传且生长发育迟缓。基于十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS - PAGE)、免疫印迹以及冷冻断裂法的电子显微镜分析结果,我们在此表明,先证者的红细胞完全缺乏带3蛋白。对先证者带3的互补DNA(cDNA)和基因组DNA进行序列分析显示,存在一个C→T的替换,导致在与人类红细胞带3 cDNA中密码子646相对应的位置出现无义突变(CGA→TGA;精氨酸→终止密码子)。先证者的红细胞缺乏血影蛋白、锚蛋白、肌动蛋白和蛋白4.2,导致膜骨架网络扭曲和破坏,密度降低。因此,先证者的红细胞膜极其不稳定,并以多种不同方式表现出表面积的丧失,如内陷、形成囊泡以及微泡的挤出,从而导致球形红细胞的形成。带3的完全缺乏还导致Cl⁻/HCO₃⁻交换缺陷,引起先证者血液中HCO₃⁻浓度和总二氧化碳含量降低,进而导致轻度酸中毒。我们的结果表明,带3确实对红细胞膜稳定性、二氧化碳运输和酸碱平衡起着作用,但并非该哺乳动物生存所必需。