Baggio B, Bordin L, Gambaro G, Piccoli A, Marzaro G, Clari G
Institute of Internal Medicine, University of Padova, School of Medicine, Italy.
Miner Electrolyte Metab. 1993;19(1):17-20.
This study was carried out to verify the hypothesis of a link between faster endogenous phosphorylation of band 3 protein, the anion carrier, and anomalous oxalate transmembrane self-exchange found in erythrocyte from calcium oxalate renal stone formers. Agents able to modify 32P-labelling of band 3 protein induced a concurrent modification in oxalate transmembrane flux. Cyclic AMP- and phospholipid-sensitive Ca(2+)-independent protein kinases seem to be critical modulators of band 3 function. These observations demonstrate a close link between the band 3 phosphorylation state and its anion transport function, and provide new insights into the pathogenetic mechanisms of the cellular anomalies observed in calcium-oxalate renal stone disease.
在草酸钙肾结石形成者的红细胞中,阴离子载体带3蛋白的内源性磷酸化加快与异常的草酸跨膜自我交换之间存在联系。能够改变带3蛋白32P标记的试剂会同时改变草酸的跨膜通量。环磷酸腺苷和磷脂敏感的非钙依赖性蛋白激酶似乎是带3功能的关键调节因子。这些观察结果表明带3的磷酸化状态与其阴离子转运功能之间存在密切联系,并为草酸钙肾结石疾病中观察到的细胞异常的发病机制提供了新的见解。