首页> 外文期刊>Journal of cell biology >Specific Single or Double Proline Substitutions in the “Spring-loaded” Coiled-Coil Region of the Influenza Hemagglutinin Impair or Abolish Membrane Fusion Activity
【24h】

Specific Single or Double Proline Substitutions in the “Spring-loaded” Coiled-Coil Region of the Influenza Hemagglutinin Impair or Abolish Membrane Fusion Activity

机译:流感血细胞凝集素的“弹簧加载”卷曲螺旋区域中特定的单脯氨酸或双脯氨酸替代破坏或废除膜融合活性

获取原文
       

摘要

We tested the role of the “spring-loaded” conformational change in the fusion mechanism of the influenza hemagglutinin (HA) by assessing the effects of 10 point mutants in the region of high coiled-coil propensity, HA2 54–81. The mutants included proline substitutions at HA2 55, 71, and 80, as well as a double proline substitution at residues 55 and 71. Mutants were expressed in COS or 293T cells and assayed for cell surface expression and structural features as well as for their ability to change conformation and induce fusion at low pH. We found the following: Specific mutations affected the precise carbohydrate structure and folding of the HA trimer. All of the mutants, however, formed trimers that could be expressed at the cell surface in a form that could be proteolytically cleaved from the precursor, HA0, to the fusion-permissive form, HA1-S-S-HA2. All mutants reacted with an antibody against the major antigenic site and bound red blood cells. Seven out of ten mutants displayed a wild-type (wt) or moderately elevated pH dependence for the conformational change. V55P displayed a substantial reduction (~60– 80%) in the initial rate of lipid mixing. The other single mutants displayed efficient fusion with the same pH dependence as wt-HA. The double proline mutant V55P/ S71P displayed no fusion activity despite being well expressed at the cell surface as a proteolytically cleaved trimer that could bind red blood cells and change conformation at low pH. The impairment in fusion for both V55P and V55P/S71P was at the level of outer leaflet lipid mixing. We interpret our results in support of the hypothesis that the spring-loaded conformational change is required for fusion. An alternate model is discussed.
机译:我们通过评估高卷曲螺旋倾向HA2 54-81区域中的10个点突变体的作用,测试了“弹簧加载”构象变化在流感血凝素(HA)融合机制中的作用。突变体包括在HA2 55、71和80处的脯氨酸取代,以及在残基55和71处的双脯氨酸取代。突变体在COS或293T细胞中表达,并检测其细胞表面表达,结构特征及其能力在低pH下改变构象并诱导融合。我们发现以下情况:特定的突变影响了HA三聚体的精确碳水化合物结构和折叠。但是,所有突变体均形成了三聚体,可以以蛋白水解的形式从前体HA0裂解为融合允许形式HA1-S-S-HA2,在细胞表面表达。所有突变体均与针对主要抗原位点的抗体反应并结合了红细胞。十分之七的突变体显示野生型(wt)或适度升高的pH依赖性构象变化。 V55P在脂质混合的初始速率上显示出大幅降低(〜60–80%)。其他单个突变体表现出有效的融合,并具有与wt-HA相同的pH依赖性。双脯氨酸突变体V55P / S71P尽管在细胞表面被蛋白水解切割的三聚体很好地表达,但在低pH值下仍能结合红细胞并改变构象,但没有显示融合活性。 V55P和V55P / S71P的融合损伤均在外部小叶脂质混合水平上。我们解释我们的结果以支持以下假设:融合需要弹簧加载的构象变化。讨论了替代模型。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号