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Molecular basis for membrane rigidity of hereditary ovalocytosis. A novel mechanism involving the cytoplasmic domain of band 3.

机译:遗传性卵圆形细胞增多症的膜硬度的分子基础。一种新的机制,涉及带3的胞质域。

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摘要

Hereditary ovalocytic red cells are characterized by a marked increase in membrane rigidity and resistance to invasion by malarial parasites. The underlying molecular defect in ovalocytes remained a mystery until Liu and colleagues (N. Engl. J. Med. 1990. 323:1530-38) made the surprising observation that the ovalocytic phenotype was linked to a structural polymorphism in band 3, the anion transporter. We have now defined the mutation in band 3 gene and established the biophysical sequelae of this mutation. This mutation involves the deletion of amino-acids 400-408 in the boundary between the cytoplasmic and the first transmembrane domains of band 3. The biophysical consequences of this mutation are a marked decrease in lateral mobility of band 3 and an increase in membrane rigidity. Based on these findings, we propose the following model for increased membrane rigidity. The mutation induces a conformational change in the cytoplasmic domain of band 3, leading to its entanglement in the skeletal protein network. This entanglement inhibits the normal unwinding and stretching of the spectrin tetramers necessary for membrane extension, leading to increased rigidity. These findings imply that the cytoplasmic domain of an integral membrane protein can have profound effects on membrane material behavior.
机译:遗传性卵泡红细胞的特征在于膜的刚度显着增加,并且对疟原虫具有抗性。直到Liu及其同事(N. Engl。J. Med。1990. 323:1530-38)做出令人惊讶的观察结果,卵泡细胞表型与第3条带中的结构多态性(阴离子)有关,卵泡细胞中的潜在分子缺陷仍然是一个谜。运输者。现在,我们已经定义了带3基因中的突变,并确定了该突变的生物物理后遗症。该突变涉及在带3的细胞质和第一个跨膜结构域之间的边界中氨基酸400-408的缺失。这种突变的生物物理后果是带3的侧向迁移率显着降低和膜刚性增加。基于这些发现,我们提出了以下用于增加膜刚度的模型。该突变诱导条带3的胞质结构域发生构象变化,从而导致其纠缠在骨骼蛋白网络中。这种纠缠抑制了膜延伸所必需的血影蛋白四聚体的正常展开和拉伸,从而导致了刚性的增加。这些发现暗示完整的膜蛋白的胞质结构域可以对膜材料的行为产生深远的影响。

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