埃及伊蚊
传染性
病毒学
生物
免疫学
生态学
病毒
幼虫
作者
Alejandro Marín-López,John D. Huck,Allen T. Esterly,Verónica Azcutia,Connor Rosen,Rolando García-Milian,Esen Sefik,Gemma Vidal‐Pedrola,Hamidah Raduwan,Tse-Yu Chen,Gunjan Arora,Stephanie Halene,Albert C. Shaw,Noah W. Palm,Richard A. Flavell,Charles A. Parkos,Saravanan Thangamani,Aaron M. Ring,Erol Fikrig
出处
期刊:Science immunology
[American Association for the Advancement of Science]
日期:2024-08-09
卷期号:9 (98): eadk9872-eadk9872
被引量:5
标识
DOI:10.1126/sciimmunol.adk9872
摘要
The Aedes aegypti mosquito is a vector of many infectious agents, including flaviviruses such as Zika virus. Components of mosquito saliva have pleomorphic effects on the vertebrate host to enhance blood feeding, and these changes also create a favorable niche for pathogen replication and dissemination. Here, we demonstrate that human CD47, which is known to be involved in various immune processes, interacts with a 34-kilodalton mosquito salivary protein named Nest1. Nest1 is up-regulated in blood-fed female A. aegypti and facilitates Zika virus dissemination in human skin explants. Nest1 has a stronger affinity for CD47 than its natural ligand, signal regulatory protein α, competing for binding at the same interface. The interaction between Nest1 with CD47 suppresses phagocytosis by human macrophages and inhibits proinflammatory responses by white blood cells, thereby suppressing antiviral responses in the skin. This interaction elucidates how an arthropod protein alters the human response to promote arbovirus infectivity.
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