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有证据表明,人类1型T细胞白血病病毒融合糖蛋白gp21的跨膜结构域近端区域在融合前和融合激活状态中具有不同作用。

Evidence that the transmembrane domain proximal region of the human T-cell leukemia virus type 1 fusion glycoprotein gp21 has distinct roles in the prefusion and fusion-activated states.

作者信息

Wilson K A, Maerz A L, Poumbourios P

机构信息

St. Vincent's Institute of Medical Research, Fitzroy, Victoria 3065 Australia.

出版信息

J Biol Chem. 2001 Dec 28;276(52):49466-75. doi: 10.1074/jbc.M108449200. Epub 2001 Oct 10.

Abstract

To investigate the structural context of the fusion peptide region in human T-cell leukemia virus type 1 gp21, maltose-binding protein (MBP) was used as an N-terminal solubilization partner for the entire gp21 ectodomain (residues 313-445) and C-terminally truncated ectodomain fragments. The bacterial expression of the MBP/gp21 chimeras resulted in soluble trimers containing intramonomer disulfide bonds. Detergents blocked the proteolytic cleavage of fusion peptide residues in the MBP/gp21-(313-425) chimera, indicating that the fusion peptide is available for interaction with detergent despite the presence of an N-terminal MBP domain. Limited proteolysis experiments indicated that the transmembrane domain proximal sequence Thr(425)-Ala(439) protects fusion peptide residues from chymotrypsin. MBP/gp21 chimera stability therefore depends on a functional interaction between N-terminal and transmembrane domain proximal regions in a gp21 helical hairpin structure. In addition, thermal aggregation experiments indicated that the Thr(425)-Ser(436) sequence confers stability to the fusion peptide-containing MBP/gp21 chimeras. The functional role of the transmembrane domain proximal sequence was assessed by alanine-scanning mutagenesis of the full-length envelope glycoprotein, with 11 of 12 single alanine substitutions resulting in 1.5- to 4.5-fold enhancements in cell-cell fusion activity. By contrast, single alanine substitutions in MBP/gp21 did not significantly alter chimera stability, indicating that multiple residues within the transmembrane domain proximal region and the fusion peptide and adjacent glycine-rich segment contribute to stability, thereby mitigating the potential effects of the substitutions. The fusion-enhancing effects of the substitutions are therefore likely to be caused by alteration of the prefusion complex. Our observations suggest that the function of the transmembrane domain proximal sequence in the prefusion envelope glycoprotein is distinct from its role in stabilizing the fusion peptide region in the fusion-activated helical hairpin conformation of gp21.

摘要

为了研究人类1型T细胞白血病病毒糖蛋白21(gp21)融合肽区域的结构背景,麦芽糖结合蛋白(MBP)被用作整个gp21胞外域(第313 - 445位氨基酸残基)及其C端截短的胞外域片段的N端增溶伴侣。MBP/gp21嵌合体在细菌中表达产生了含有单体内部二硫键的可溶性三聚体。去污剂可阻断MBP/gp21 - (313 - 425)嵌合体中融合肽残基的蛋白水解切割,这表明尽管存在N端MBP结构域,融合肽仍可与去污剂相互作用。有限蛋白酶解实验表明,跨膜结构域近端序列苏氨酸(Thr425)-丙氨酸(Ala439)可保护融合肽残基不被胰凝乳蛋白酶切割。因此,MBP/gp21嵌合体的稳定性取决于gp21螺旋发夹结构中N端和跨膜结构域近端区域之间的功能性相互作用。此外,热聚集实验表明,苏氨酸(Thr425)-丝氨酸(Ser436)序列赋予了含融合肽的MBP/gp21嵌合体稳定性。通过对全长包膜糖蛋白进行丙氨酸扫描诱变来评估跨膜结构域近端序列的功能作用,12个单丙氨酸替代中有11个导致细胞 - 细胞融合活性提高了1.5至4.5倍。相比之下,MBP/gp21中的单丙氨酸替代并未显著改变嵌合体的稳定性,这表明跨膜结构域近端区域内的多个残基以及融合肽和相邻富含甘氨酸的片段共同作用于稳定性,从而减轻了替代的潜在影响。因此,这些替代的融合增强作用可能是由融合前复合物的改变引起的。我们的观察结果表明,融合前包膜糖蛋白中跨膜结构域近端序列的功能与其在稳定gp21融合激活螺旋发夹构象中融合肽区域的作用不同。

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