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Assembly and regulation of a glycolytic enzyme complex on the human erythrocyte membrane

机译:糖酵解酶复合物在人红细胞膜上的组装和调控

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To characterize the location of glycolytic enzymes (GEs) in intact human erythrocytes, freshly drawn blood was fixed and stained with Abs to GAPDH, aldolase, phosphofructokinase (PFK), pyruvate kinase (PK), lactate dehydrogenase (LDH), carbonic anhydrase Ⅱ, Hb, and band 3 (AE1). Confocal microscopy revealed that in cells where band 3 displays its expected membrane staining and Hb is evenly distributed across the cytoplasm, GEs are largely limited to the membrane. Biochemical studies confirmed that the membrane binding sites for GAPDH, aldolase, and PFK reside on band 3, but related analyses demonstrate that sites for PK and LDH do not. Four lines of evidence demonstrate that the GEs are at least partially assembled into multimeric complexes near the NH_2 terminus of band 3. First, a mAb to residues 1-12 of band 3 displaces all of the above GEs from the membrane, including LDH and PK, which do not bind band 3. Second, tyrosine phosphorylation of the NH_2 terminus of band 3 (Y8 and Y21) reversibly releases all of the GEs from the membrane, including LDH and PK. Third, deoxygenation of RBCs dislodges all GEs from the membrane, consistent with the established ability of deoxyHb but not oxyHb to bind the NH_2 terminus of band 3. Fourth, a large increase in the accessibility of enzyme epitopes is observed upon dissociation of GEs from the membrane. We conclude, therefore, that GEs are organized into complexes on the membrane whose assembly is regulated by oxygenation and phosphorylation.
机译:为了表征完整人类红细胞中糖酵解酶(GEs)的位置,将新鲜抽取的血液固定并用Abs染色至GAPDH,醛缩酶,磷酸果糖激酶(PFK),丙酮酸激酶(PK),乳酸脱氢酶(LDH),碳酸酐酶Ⅱ, Hb和频段3(AE1)。共聚焦显微镜显示,在第3条带显示其预期的膜染色且Hb均匀分布在细胞质中的细胞中,GEs主要限于膜。生化研究证实,GAPDH,醛缩酶和PFK的膜结合位点位于3带,但相关分析表明PK和LDH的位点不存在。四条证据表明,GEs至少部分地组装在条带3 ​​NH_2末端附近的多聚体复合物中。首先,对条带3残基1-12的单克隆抗体将所有上述GEs从膜上置换,包括LDH和PK。 ,它们不结合条带3。第二,条带3的NH_2末端的酪氨酸磷酸化(Y8和Y21)可逆地从膜上释放所有的GE,包括LDH和PK。第三,RBCs的脱氧作用将所有GE从膜上清除,这与已建立的deoxyHb而非oxyHb结合3带NH_2末端的能力相一致。膜。因此,我们得出的结论是,GEs在膜上组织成复合物,其组装受氧合和磷酸化作用调节。

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