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影响1型人嗜T淋巴细胞病毒(HTLV-1)在细胞膜上依赖性融合的分子机制:对抑制病毒传播的启示

Molecular mechanisms affecting HTLV type 1-dependent fusion at the cell membrane: implications for inhibiting viral transmission.

作者信息

Daenke S, Booth S

机构信息

Nuffield Department of Medicine, University of Oxford, John Radcliffe Hospital, Oxford OX3 9DU, England, UK.

出版信息

AIDS Res Hum Retroviruses. 2000 Nov 1;16(16):1731-6. doi: 10.1089/08892220050193227.

Abstract

Infection with human T cell leukemia virus type 1 is detected by screening programs and contact follow-up procedures. Where chronic infection results in overt pathology, this is treated largely symptomatically and control of transmission relies on physical and educational constraints. The poor infectious transmission rate of HTLV-1 has long been described but to date has not been exploited in preventative measures to combat the spread of the virus. We undertook to investigate some of the molecular steps involved in HTLV-1 cell-cell fusion, the main mechanism of transmission. We showed that poor transmission may relate in part to an inefficiency in adopting and maintaining a fusion competent conformation of the HTLV-1 envelope TM protein. In cell-cell fusion, this deficiency can be complemented by accessory molecules on both infected and target cells that stabilize the envelope/receptor interaction. In virion-cell fusion, this is less likely, leading to an inefficient interaction and poor infectious transmission by cell-free virus. A discussion of the accessory molecules involved in HTLV-1 fusion is presented. This weak envelope-dependent interaction with target cells in the host can be potently disrupted by peptides that destabilize the TM protein structure and significantly inhibit HTLV-1 fusion. These observations may be useful in the design of therapeutic agents to prevent HTLV-1 transmission.

摘要

通过筛查项目和接触者随访程序来检测人类1型T细胞白血病病毒感染。当慢性感染导致明显病变时,主要进行对症治疗,而病毒传播的控制则依赖于物理和教育方面的限制措施。HTLV-1的低感染传播率早已为人所知,但迄今为止尚未在抗击该病毒传播的预防措施中得到利用。我们着手研究HTLV-1细胞间融合(主要传播机制)所涉及的一些分子步骤。我们发现,传播率低可能部分与HTLV-1包膜TM蛋白采用和维持融合活性构象的效率低下有关。在细胞间融合中,这种缺陷可以被感染细胞和靶细胞上的辅助分子所弥补,这些辅助分子可稳定包膜/受体相互作用。在病毒体-细胞融合中,这种情况不太可能发生,导致相互作用效率低下,游离病毒的感染传播能力较差。本文讨论了参与HTLV-1融合的辅助分子。宿主中与靶细胞的这种依赖包膜的弱相互作用可被破坏TM蛋白结构并显著抑制HTLV-1融合的肽有效破坏。这些观察结果可能有助于设计预防HTLV-1传播的治疗药物。

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