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跨膜结构域对人源和鼠源白血病逆转录病毒包膜融合能力的影响。

Influence of transmembrane domains on the fusogenic abilities of human and murine leukemia retrovirus envelopes.

作者信息

Denesvre C, Sonigo P, Corbin A, Ellerbrok H, Sitbon M

机构信息

Institut Cochin de Génétique Moléculaire, CNRS UPR415, Université Paris V, France.

出版信息

J Virol. 1995 Jul;69(7):4149-57. doi: 10.1128/JVI.69.7.4149-4157.1995.

Abstract

The envelopes of two highly divergent oncoviruses, human T-cell leukemia virus type 1 (HTLV-1) and Friend murine leukemia virus (F-MuLV), have distinct patterns of cellular receptor recognition, fusion, and syncytium formation. To analyze the influence of the transmembrane envelope subunit (TM) on fusogenic properties, we substituted either the entire TM or distinct domains from F-MuLV for the corresponding domains in the HTLV-1 envelope. Parental, chimeric, and truncated envelopes cloned into a eukaryotic expression vector were monitored for fusogenic potential in human, rat, and murine indicator cell lines by using a quantitative assay. This highly sensitive assay allowed us to assess the fusogenic properties and syncytium-forming abilities of the HTLV-1 envelope in murine NIH 3T3 cells. All chimeric envelopes containing extracellular sequences of the F-MuLV TM were blocked in their maturation process. Although deletions of the HTLV-1 cytoplasmic domain, alone and in combination with the membrane-spanning domain, did not prevent envelope cell surface expression, they impaired and suppressed fusogenic properties, respectively. In contrast, envelopes carrying substitutions of membrane-spanning and cytoplasmic domains were highly fusogenic. Our results indicate that these two domains in F-MuLV and HTLV-1 constitute structural entities with similar fusogenic properties. However, in the absence of a cytoplasmic domain, the F-MuLV membrane-spanning domain appeared to confer weaker fusogenic properties than the HTLV-1 membrane-spanning domain.

摘要

两种高度不同的致瘤病毒,即人类T细胞白血病病毒1型(HTLV-1)和弗瑞德鼠白血病病毒(F-MuLV),其包膜在细胞受体识别、融合及合胞体形成方面具有不同模式。为分析跨膜包膜亚基(TM)对融合特性的影响,我们将F-MuLV的整个TM或不同结构域替换为HTLV-1包膜中的相应结构域。通过定量分析,监测克隆到真核表达载体中的亲本、嵌合及截短包膜在人、大鼠和小鼠指示细胞系中的融合潜力。这种高度灵敏的分析方法使我们能够评估HTLV-1包膜在小鼠NIH 3T3细胞中的融合特性和合胞体形成能力。所有含有F-MuLV TM胞外序列的嵌合包膜在其成熟过程中均受阻。虽然单独缺失HTLV-1胞质结构域以及与跨膜结构域一起缺失时,并不妨碍包膜在细胞表面的表达,但它们分别损害和抑制了融合特性。相反,携带跨膜结构域和胞质结构域替换的包膜具有高度融合性。我们的结果表明,F-MuLV和HTLV-1中的这两个结构域构成了具有相似融合特性的结构实体。然而,在没有胞质结构域的情况下,F-MuLV跨膜结构域赋予的融合特性似乎比HTLV-1跨膜结构域弱。

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