Structural basis of chemokine sequestration by CrmD, a poxvirus-encoded tumor necrosis factor receptor.

Pathogens have evolved sophisticated mechanisms to evade detection and destruction by the host immune system. Large DNA viruses encode homologues of chemokines and their receptors, as well as chemokine-binding proteins (CKBPs) to modulate the chemokine network in host response. The SECRET domain (sm...

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Main Authors: Xiaoguang Xue, Qingyu Lu, Hui Wei, Dongli Wang, Dongwei Chen, Guangjun He, Li Huang, Hanzhong Wang, Xinquan Wang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-07-01
Series:PLoS Pathogens
Online Access:http://europepmc.org/articles/PMC3145792?pdf=render
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spelling doaj-96bb28797da4488eb8a835a9b6821e622020-11-25T02:57:44ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742011-07-0177e100216210.1371/journal.ppat.1002162Structural basis of chemokine sequestration by CrmD, a poxvirus-encoded tumor necrosis factor receptor.Xiaoguang XueQingyu LuHui WeiDongli WangDongwei ChenGuangjun HeLi HuangHanzhong WangXinquan WangPathogens have evolved sophisticated mechanisms to evade detection and destruction by the host immune system. Large DNA viruses encode homologues of chemokines and their receptors, as well as chemokine-binding proteins (CKBPs) to modulate the chemokine network in host response. The SECRET domain (smallpox virus-encoded chemokine receptor) represents a new family of viral CKBPs that binds a subset of chemokines from different classes to inhibit their activities, either independently or fused with viral tumor necrosis factor receptors (vTNFRs). Here we present the crystal structures of the SECRET domain of vTNFR CrmD encoded by ectromelia virus and its complex with chemokine CX3CL1. The SECRET domain adopts a β-sandwich fold and utilizes its β-sheet I surface to interact with CX3CL1, representing a new chemokine-binding manner of viral CKBPs. Structure-based mutagenesis and biochemical analysis identified important basic residues in the 40s loop of CX3CL1 for the interaction. Mutation of corresponding acidic residues in the SECRET domain also affected the binding for other chemokines, indicating that the SECRET domain binds different chemokines in a similar manner. We further showed that heparin inhibited the binding of CX3CL1 by the SECRET domain and the SECRET domain inhibited RAW264.7 cell migration induced by CX3CL1. These results together shed light on the structural basis for the SECRET domain to inhibit chemokine activities by interfering with both chemokine-GAG and chemokine-receptor interactions.http://europepmc.org/articles/PMC3145792?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Xiaoguang Xue
Qingyu Lu
Hui Wei
Dongli Wang
Dongwei Chen
Guangjun He
Li Huang
Hanzhong Wang
Xinquan Wang
spellingShingle Xiaoguang Xue
Qingyu Lu
Hui Wei
Dongli Wang
Dongwei Chen
Guangjun He
Li Huang
Hanzhong Wang
Xinquan Wang
Structural basis of chemokine sequestration by CrmD, a poxvirus-encoded tumor necrosis factor receptor.
PLoS Pathogens
author_facet Xiaoguang Xue
Qingyu Lu
Hui Wei
Dongli Wang
Dongwei Chen
Guangjun He
Li Huang
Hanzhong Wang
Xinquan Wang
author_sort Xiaoguang Xue
title Structural basis of chemokine sequestration by CrmD, a poxvirus-encoded tumor necrosis factor receptor.
title_short Structural basis of chemokine sequestration by CrmD, a poxvirus-encoded tumor necrosis factor receptor.
title_full Structural basis of chemokine sequestration by CrmD, a poxvirus-encoded tumor necrosis factor receptor.
title_fullStr Structural basis of chemokine sequestration by CrmD, a poxvirus-encoded tumor necrosis factor receptor.
title_full_unstemmed Structural basis of chemokine sequestration by CrmD, a poxvirus-encoded tumor necrosis factor receptor.
title_sort structural basis of chemokine sequestration by crmd, a poxvirus-encoded tumor necrosis factor receptor.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2011-07-01
description Pathogens have evolved sophisticated mechanisms to evade detection and destruction by the host immune system. Large DNA viruses encode homologues of chemokines and their receptors, as well as chemokine-binding proteins (CKBPs) to modulate the chemokine network in host response. The SECRET domain (smallpox virus-encoded chemokine receptor) represents a new family of viral CKBPs that binds a subset of chemokines from different classes to inhibit their activities, either independently or fused with viral tumor necrosis factor receptors (vTNFRs). Here we present the crystal structures of the SECRET domain of vTNFR CrmD encoded by ectromelia virus and its complex with chemokine CX3CL1. The SECRET domain adopts a β-sandwich fold and utilizes its β-sheet I surface to interact with CX3CL1, representing a new chemokine-binding manner of viral CKBPs. Structure-based mutagenesis and biochemical analysis identified important basic residues in the 40s loop of CX3CL1 for the interaction. Mutation of corresponding acidic residues in the SECRET domain also affected the binding for other chemokines, indicating that the SECRET domain binds different chemokines in a similar manner. We further showed that heparin inhibited the binding of CX3CL1 by the SECRET domain and the SECRET domain inhibited RAW264.7 cell migration induced by CX3CL1. These results together shed light on the structural basis for the SECRET domain to inhibit chemokine activities by interfering with both chemokine-GAG and chemokine-receptor interactions.
url http://europepmc.org/articles/PMC3145792?pdf=render
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