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An Intrinsically Disordered Motif Mediates Diverse Actions of Monomeric C-reactive Protein

机译:本质上混乱的母题介导单体C反应蛋白的多种作用。

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摘要

Most proinflammatory actions of C-reactive protein (CRP) are only expressed following dissociation of its native pentameric assembly into monomeric form (mCRP). However, little is known about what underlies the greatly enhanced activities of mCRP. Here we show that a single sequence motif, i.e. cholesterol binding sequence (CBS; a.a. 35–47), is responsible for mediating the interactions of mCRP with diverse ligands. The binding of mCRP to lipoprotein component ApoB, to complement component C1q, to extracellular matrix components fibronectin and collagen, to blood coagulation component fibrinogen, and to membrane lipid component cholesterol, are all found to be markedly inhibited by the synthetic CBS peptide but not by other CRP sequences tested. Likewise, mutating CBS in mCRP also greatly impairs these interactions. Functional experiments further reveal that CBS peptide significantly reduces the effects of mCRP on activation of endothelial cells in vitro and on acute induction of IL-6 in mice. The potency and specificity of CBS are critically determined by the N-terminal residues Cys-36, Leu-37, and His-38; while the versatility of CBS appears to originate from its intrinsically disordered conformation polymorphism. Together, these data unexpectedly identify CBS as the major recognition site of mCRP and suggest that this motif may be exploited to tune the proinflammatory actions of mCRP.
机译:C反应蛋白(CRP)的大多数促炎作用只有在其天然五聚体组装解离为单体形式(mCRP)后才能表达。但是,关于什么大大增强了mCRP的活动知之甚少。在这里,我们显示了一个单一的序列基序,即胆固醇结合序列(CBS; a.a. 35-47),负责介导mCRP与各种配体的相互作用。已经发现,mCRP与脂蛋白成分ApoB,补体成分C1q,细胞外基质成分纤连蛋白和胶原蛋白,血液凝结成分纤维蛋白原以及膜脂质成分胆固醇的结合均受到合成CBS肽的显着抑制,但并未受到抑制。测试了其他CRP序列。同样,在mCRP中使CBS发生突变也极大地损害了这些相互作用。功能实验进一步揭示,CBS肽可显着降低mCRP对体外内皮细胞活化和小鼠IL-6急性诱导的影响。 CBS的效力和特异性由N端残基Cys-36,Leu-37和His-38决定;而CBS的多功能性似乎源自其固有的无序构象多态性。总之,这些数据出乎意料地将CBS识别为mCRP的主要识别位点,并表明该基序可用于调节mCRP的促炎作用。

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