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CXCL12γ趋化因子展现出前所未有的结构和功能特性,使其成为趋化蛋白的典范。

The CXCL12gamma chemokine displays unprecedented structural and functional properties that make it a paradigm of chemoattractant proteins.

作者信息

Rueda Patricia, Balabanian Karl, Lagane Bernard, Staropoli Isabelle, Chow Ken, Levoye Angelique, Laguri Cedric, Sadir Rabia, Delaunay Thierry, Izquierdo Elena, Pablos Jose Luis, Lendinez Elena, Caruz Antonio, Franco Diego, Baleux Françoise, Lortat-Jacob Hugues, Arenzana-Seisdedos Fernando

机构信息

Departamento de Biología Experimental, Universidad de Jaén, Jaén, Spain.

出版信息

PLoS One. 2008 Jul 2;3(7):e2543. doi: 10.1371/journal.pone.0002543.

Abstract

The CXCL12gamma chemokine arises by alternative splicing from Cxcl12, an essential gene during development. This protein binds CXCR4 and displays an exceptional degree of conservation (99%) in mammals. CXCL12gamma is formed by a protein core shared by all CXCL12 isoforms, extended by a highly cationic carboxy-terminal (C-ter) domain that encompass four overlapped BBXB heparan sulfate (HS)-binding motifs. We hypothesize that this unusual domain could critically determine the biological properties of CXCL12gamma through its interaction to, and regulation by extracellular glycosaminoglycans (GAG) and HS in particular. By both RT-PCR and immunohistochemistry, we mapped the localization of CXCL12gamma both in mouse and human tissues, where it showed discrete differential expression. As an unprecedented feature among chemokines, the secreted CXCL12gamma strongly interacted with cell membrane GAG, thus remaining mostly adsorbed on the plasmatic membrane upon secretion. Affinity chromatography and surface plasmon resonance allowed us to determine for CXCL12gamma one of the higher affinity for HS (K(d) = 0.9 nM) ever reported for a protein. This property relies in the presence of four canonical HS-binding sites located at the C-ter domain but requires the collaboration of a HS-binding site located in the core of the protein. Interestingly, and despite reduced agonist potency on CXCR4, the sustained binding of CXCL12gamma to HS enabled it to promote in vivo intraperitoneal leukocyte accumulation and angiogenesis in matrigel plugs with much higher efficiency than CXCL12alpha. In good agreement, mutant CXCL12gamma chemokines selectively devoid of HS-binding capacity failed to promote in vivo significant cell recruitment. We conclude that CXCL12gamma features unique structural and functional properties among chemokines which rely on the presence of a distinctive C-ter domain. The unsurpassed capacity to bind to HS on the extracellular matrix would make CXCL12gamma the paradigm of haptotactic proteins, which regulate essential homeostatic functions by promoting directional migration and selective tissue homing of cells.

摘要

CXCL12γ趋化因子是由Cxcl12通过可变剪接产生的,Cxcl12是发育过程中的一个必需基因。该蛋白与CXCR4结合,在哺乳动物中具有极高的保守度(99%)。CXCL12γ由所有CXCL12亚型共有的蛋白核心形成,通过一个高度阳离子化的羧基末端(C端)结构域延伸,该结构域包含四个重叠的BBXB硫酸乙酰肝素(HS)结合基序。我们推测,这个不寻常的结构域可能通过与细胞外糖胺聚糖(GAG)特别是HS的相互作用及其调节作用,关键地决定了CXCL12γ的生物学特性。通过逆转录聚合酶链反应(RT-PCR)和免疫组织化学,我们绘制了CXCL12γ在小鼠和人类组织中的定位,其在这些组织中表现出离散的差异表达。作为趋化因子中前所未有的特征,分泌的CXCL12γ与细胞膜GAG强烈相互作用,因此在分泌后大多吸附在质膜上。亲和层析和表面等离子体共振使我们能够确定CXCL12γ对HS的亲和力之一是报道过的蛋白质中较高的(解离常数K(d)=0.9 nM)。这种特性依赖于位于C端结构域的四个典型HS结合位点的存在,但需要位于蛋白核心的一个HS结合位点的协同作用。有趣的是,尽管CXCL12γ对CXCR4的激动剂效力降低,但其与HS的持续结合使其能够比CXCL12α更高效地促进体内腹腔白细胞积聚和基质胶栓中的血管生成。与此一致的是,选择性缺乏HS结合能力的突变型CXCL12γ趋化因子无法促进体内显著的细胞募集。我们得出结论,CXCL12γ在趋化因子中具有独特的结构和功能特性,这依赖于一个独特的C端结构域的存在。在细胞外基质上与HS结合的无与伦比的能力将使CXCL12γ成为趋触性蛋白的典范,其通过促进细胞的定向迁移和选择性组织归巢来调节基本的稳态功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7368/2481281/4010a219c5bf/pone.0002543.g001.jpg

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