Imhof B A, Acha-Orbea H J, Libermann T A, Reber B F, Lanz J H, Winterhalter K H, Birchmeier W
Proc Natl Acad Sci U S A. 1980 Jun;77(6):3264-8. doi: 10.1073/pnas.77.6.3264.
The mechanism of phosphosylation and dephosphorylation of spectrin from human erythrocyte membranes has been examined under closely physiological conditions. The results support the hypothesis that spectrin is an autophosphorylating and dephosphorylating system. (i) Extraction from ghosts of up to 85% of the kinase (casein kinase) suggested to catalyze the reaction [see Fairbanks, G., Avruch, J., Dino, E. J. & Patel, V. P. (1978) J. Supramol. Struct. 9, 97--112] only slightly reduced spectrin component 2 phosphorylation and did not affect ATP-induced changes in the ghosts' shapes. (ii) A spectrin--actin complex isolated from endocytotic inside-out vesicles under hyperteonic conditions contained virtually no casein kinase activity and still exhibited a largely intact phosphorylation machinery. (iii) Photoaffinity labeling experiments indicated that spectrin component 2 fulfills the necessary prerequisite of the hypothesis--i.e., it contains its own ATP-binding site. (iv) Under various conditions, spectrin phosphorylation and dephospohrylation seem to be tightly coupled. The implications of these findings for the understanding of spectrin function and the maintenance of erythrocyte shape are discussed.
在接近生理条件下,对人红细胞膜血影蛋白的磷酸化和去磷酸化机制进行了研究。结果支持血影蛋白是一个自身磷酸化和去磷酸化系统的假说。(i) 从血影中提取高达85%的被认为催化该反应的激酶(酪蛋白激酶)[见Fairbanks, G., Avruch, J., Dino, E. J. & Patel, V. P. (1978) J. Supramol. Struct. 9, 97 - 112],仅略微降低血影蛋白组分2的磷酸化,且不影响ATP诱导的血影形状变化。(ii) 在高渗条件下从内吞的外翻小泡中分离出的血影蛋白 - 肌动蛋白复合物几乎不含有酪蛋白激酶活性,但仍表现出基本完整的磷酸化机制。(iii) 光亲和标记实验表明血影蛋白组分2满足该假说的必要前提条件,即它含有自身的ATP结合位点。(iv) 在各种条件下,血影蛋白的磷酸化和去磷酸化似乎紧密偶联。讨论了这些发现对理解血影蛋白功能和维持红细胞形状的意义。