Red Cell Physiology Laboratory, New York Blood Center, New York, NY 10065, USA.
Biochemistry. 2011 May 31;50(21):4561-7. doi: 10.1021/bi200154g. Epub 2011 May 6.
The bulk of the red blood cell membrane proteins are partitioned between two multiprotein complexes, one associated with ankyrin R and the other with protein 4.1R. Here we examine the effect of phosphorylation of 4.1R on its interactions with its partners in the membrane. We show that activation of protein kinase C in the intact cell leads to phosphorylation of 4.1R at two sites, serine 312 and serine 331. This renders the 4.1R-associated transmembrane proteins GPC, Duffy, XK, and Kell readily extractable by nonionic detergent with no effect on the retention of band 3 and Rh, both of which also interact with 4.1R. In solution, phosphorlyation at either serine suppresses the capacity of 4.1R to bind to the cytoplasmic domains of GPC, Duffy, and XK. Phosphorylation also exerts an effect on the stability in situ of the ternary spectrin-actin-4.1R complex, which characterizes the junctions of the membrane skeletal network, as measured by the enhanced competitive entry of a β-spectrin peptide possessing both actin- and 4.1R-binding sites. Thus, phosphorylation weakens the affinity of 4.1R for β-spectrin. The two 4.1R phosphorylation sites lie in a domain flanked in the sequence by the spectrin- and actin-binding domain and a domain containing the binding sites for transmembrane proteins. It thus appears that phosphorylation of a regulatory domain in 4.1R results in structural changes transmitted to the functional interaction centers of the protein. We consider possible implications of our findings for the altered membrane function of normal reticulocytes and sickle red cells.
红细胞膜大多数的蛋白都位于两个多蛋白复合物之间,一个与锚蛋白 R 相关,另一个与蛋白 4.1R 相关。在这里,我们研究了 4.1R 磷酸化对其与膜中伴侣相互作用的影响。我们发现,在完整细胞中激活蛋白激酶 C 会导致 4.1R 在两个位点(丝氨酸 312 和丝氨酸 331)磷酸化。这使得 4.1R 相关的跨膜蛋白 GPC、Duffy、XK 和 Kell 很容易被非离子洗涤剂提取,而对与 4.1R 相互作用的带 3 和 Rh 的保留没有影响。在溶液中,丝氨酸的磷酸化抑制了 4.1R 与 GPC、Duffy 和 XK 的细胞质结构域结合的能力。磷酸化还对三元血影蛋白-肌动蛋白-4.1R 复合物的原位稳定性产生影响,这反映了膜骨架网络连接处的特征,如具有肌动蛋白和 4.1R 结合位点的 β-血影蛋白肽的竞争进入增强所测。因此,磷酸化削弱了 4.1R 与 β-血影蛋白的亲和力。这两个 4.1R 磷酸化位点位于一个序列上由血影蛋白和肌动蛋白结合域以及包含跨膜蛋白结合位点的域所包围的结构域中。因此,4.1R 调节域的磷酸化似乎导致结构变化传递到蛋白质的功能相互作用中心。我们考虑了我们的发现对正常网织红细胞和镰状红细胞改变的膜功能的可能影响。