首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Irreversible deformation of the spectrin-actin lattice in irreversibly sickled cells.
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Irreversible deformation of the spectrin-actin lattice in irreversibly sickled cells.

机译:不可逆镰状细胞中血影蛋白-肌动蛋白晶格的不可逆变形。

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摘要

Irreversibly sickled cells (ISC's) are circulating erythrocytes in patients with sickle cell disease that retain a sickled shape even when oxygenated. Evidence points to a membrane defect that prevents the return of these cells to the normal biconcave shape. The erythrocyte membrane protein spectrin is believed to help control erythrocyte shape and deformability. Recent studies suggest that normally spectrin and an erythrocyte actin form a self-supporting, fibrillar, lattice-like network on the cytoplasmic membrane surface. When normal erythrocyte ghosts are extracted with Triton X-100 all the integral membrane proteins and most of the membrane lipids are removed, leaving a ghost-shaped residue composed principally of spectrin and actin. We concentrated ISC's from patients with sickle cell anemia and compared the morphology and protein composition of ghosts and Triton-extracted ghost residues prepared from these ISC's with similar preparations of reversibly sickable cells and normal cells. (a) Many ISC's formed ISC-shaped ghosts. (b) All ISC-shaped ghosts formed ISC-shaped Triton residues. (c) Spectrin, erythrocyte actin (Band 5), an unidentified Band 3 component, and Band 4.1 were the major protein components of the Triton residues. All membrane-associated sickle hemoglobin was removed by the Triton treatment. (d) No ISC-shaped ghosts or ISC-shaped Triton residues were formed when deoxygenated, sickled RSC's were lysed or Triton-extracted. ISC-shaped ghosts and Triton residues were never formed from normal cells. These observations suggest that a defect of the "spectrin-actin lattice" may be the primary abnormality of the ISC membrane. Since ISC's are rigid cells, the data support the postulate that spectrin is a major determinant of membrane deformability. Finally, they provide direct evidence that spectrin is important in determining erythrocyte shape.
机译:镰状细胞病患者中不可逆的镰状细胞(ISC's)是循环中的红细胞,即使被氧化也能保持镰状形状。证据表明存在膜缺陷,阻止了这些细胞恢复正常的双凹形状。据认为,红细胞膜蛋白血影蛋白有助于控制红细胞的形状和可变形性。最近的研究表明,正常的血影蛋白和红细胞肌动蛋白在细胞质膜表面形成一个自支撑的,原纤维状,格状的网络。当用Triton X-100提取正常的红血球鬼影时,所有的完整膜蛋白和大多数膜脂都被去除,留下了主要由血影蛋白和肌动蛋白组成的鬼影状残留物。我们对镰状细胞性贫血患者的ISC进行了浓缩,并比较了由这些ISC制备的幽灵和Triton提取的幽灵残留物的形态和蛋白质组成,以及可逆性可疑细胞和正常细胞的类似制剂。 (a)许多ISC形成了ISC形的幻影。 (b)所有ISC形鬼影均形成了ISC形的Triton残留物。 (c)血影蛋白,红细胞肌动蛋白(5带),一个未知的3带成分和4.1带是Triton残基的主要蛋白质成分。通过Triton处理去除了所有与膜相关的镰状血红蛋白。 (d)脱氧,镰刀状RSC裂解或Triton提取后,未形成ISC形鬼影或ISC形Triton残留物。 ISC形的鬼影和Triton残留物从未从正常细胞中形成。这些观察结果表明“血影蛋白-肌动蛋白晶格”的缺陷可能是ISC膜的主要异常。由于ISC是刚性细胞,因此数据支持血影蛋白是膜变形能力的主要决定因素。最后,他们提供了直接的证据证明血影蛋白在确定红细胞形状中很重要。

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