Knowles W J, Morrow J S, Speicher D W, Zarkowsky H S, Mohandas N, Mentzer W C, Shohet S B, Marchesi V T
J Clin Invest. 1983 Jun;71(6):1867-77. doi: 10.1172/jci110942.
The structural and functional properties of spectrin from normal and hereditary pyropoikilocytosis (HPP) donors from the two unrelated families were studied. The structural domains of the spectrin molecule were generated by mild tryptic digestion and analyzed by two-dimensional electrophoresis (isoelectric focusing; sodium dodecyl sulfate-polyacrylamide gel electrophoresis). The alpha I-T80 peptide (Mr 80,000) is not detectable in two related HPP donors; instead, two new peptides (Mr 50,000 and 21,000) are generated and have been identified as fragments of the normal alpha I-T80. A third sibling has reduced levels of both the normal alpha I-T80 and the two new peptides. A similar analysis of spectrin from another HPP family indicates that their spectrins contain reduced amounts of the alpha I-T80 and the 50,000 and 21,000 fragments of the alpha I domain. The HPP donor also has other structural variations in the alpha I, alpha II, and alpha III domains. The alpha I-T80 domain of normal spectrin has been shown to be an important site for spectrin oligomerization (J. Morrow and V.T. Marchesi. 1981. J. Cell Biol. 88: 463-468), and in vitro assays indicate that HPP spectrin has an impaired ability to oligomerize. Ghost membranes from HPP donors are also more fragile than membranes from normal erythrocytes when measured by ektacytometry. In both the oligomerization and fragility assays, the degree of impairment is correlated with the amount of normal alpha I-T80 present in the spectrin molecule. We believe that a structural alteration in the alpha I-T80 domain perturbs normal in vivo oligomerization of spectrin, producing a marked decrease in erythrocyte stability.
对来自两个不相关家族的正常供体和遗传性热异形红细胞增多症(HPP)供体的血影蛋白的结构和功能特性进行了研究。血影蛋白分子的结构域通过温和的胰蛋白酶消化产生,并通过二维电泳(等电聚焦;十二烷基硫酸钠-聚丙烯酰胺凝胶电泳)进行分析。在两名相关的HPP供体中未检测到αI-T80肽(分子量80,000);相反,产生了两种新的肽(分子量50,000和21,000),并已鉴定为正常αI-T80的片段。第三名同胞的正常αI-T80和这两种新肽的水平均降低。对另一个HPP家族的血影蛋白进行的类似分析表明,他们的血影蛋白中αI-T80以及αI结构域的50,000和21,000片段的含量减少。HPP供体在αI、αII和αIII结构域中也存在其他结构变异。正常血影蛋白的αI-T80结构域已被证明是血影蛋白寡聚化的重要位点(J. 莫罗和V.T. 马尔凯西。1981年。《细胞生物学杂志》88: 463-468),体外试验表明,HPP血影蛋白的寡聚化能力受损。通过激光衍射法测量时,HPP供体的血影膜也比正常红细胞的膜更脆弱。在寡聚化和脆性试验中,受损程度与血影蛋白分子中正常αI-T80的含量相关。我们认为,αI-T80结构域的结构改变扰乱了血影蛋白在体内的正常寡聚化,导致红细胞稳定性显著降低。