Arimitsu Nagisa, Akimitsu Nobuyoshi, Kotani Norihiro, Takasaki Seiichi, Kina Tatsuo, Hamamoto Hiroshi, Kamura Koushirou, Sekimizu Kazuhisa
Department of Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Genes Cells. 2003 Sep;8(9):769-77. doi: 10.1046/j.1365-2443.2003.00674.x.
Glycophorin A (GPA) has a large number of sialic acid-containing oligosaccharide chains. GPA is highly conserved among vertebrates, mice with a GPA deletion have not been reported and GPA's physiologic role remains uncertain.
GPA-/- homozygotes were obtained by intercrossing GPA+/- heterozygotes based on Mendelian genetics. The amount of O-linked oligosaccharide chains in the erythrocyte membrane of GPA-/- mice decreased to 60% compared to that of the wild-type mice. Flow cytometry and Western blot analysis revealed that the TER antigen that is associated with GPA on the erythrocyte membrane was totally abrogated from the cell surface in GPA-/- mice. Several glycoproteins that were detected with peanut agglutinin (PNA), a lectin that recognizes O-linked oligosaccharide chains, were absent from the GPA-/- erythrocyte membrane. Erythrocytes lacking GPA were more sensitive to hypo-osmotic stress than wild-type erythrocyte.
GPA-/- mice show apparently normal phenotypes at least during the early generations. The disappearance of many glycoproteins recognized by PNA lectin on the GPA-/- erythrocyte membrane proteins suggests that GPA has an essential role in the expression of O-linked antigens on the erythrocyte membrane protein. These interactions of GPA and other glycoproteins may contribute to maintaining the physical strength of the erythrocyte membrane.
血型糖蛋白A(GPA)含有大量含唾液酸的寡糖链。GPA在脊椎动物中高度保守,尚未有关于GPA基因敲除小鼠的报道,其生理作用仍不明确。
基于孟德尔遗传学原理,通过使GPA+/-杂合子相互杂交获得了GPA-/-纯合子。与野生型小鼠相比,GPA-/-小鼠红细胞膜上O-连接寡糖链的数量减少至60%。流式细胞术和蛋白质印迹分析显示,与GPA相关的TER抗原在GPA-/-小鼠的细胞表面完全消失。用识别O-连接寡糖链的凝集素花生凝集素(PNA)检测到的几种糖蛋白在GPA-/-红细胞膜上不存在。缺乏GPA的红细胞比野生型红细胞对低渗应激更敏感。
至少在早期几代中,GPA-/-小鼠表现出明显正常的表型。GPA-/-红细胞膜蛋白上许多被PNA凝集素识别的糖蛋白的消失表明,GPA在红细胞膜蛋白上O-连接抗原的表达中起重要作用。GPA与其他糖蛋白的这些相互作用可能有助于维持红细胞膜的物理强度。