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BB 环内外的氨基酸残基对人 Toll 样受体(TLR)2/2、TLR2/1 和 TLR2/6 的反应性具有不同的作用。

Divergent roles of amino acid residues inside and outside the BB loop affect human Toll-like receptor (TLR)2/2, TLR2/1 and TLR2/6 responsiveness.

机构信息

Department of Pathogenic Biology, Third Military Medical University, Chongqing, P. R. China.

出版信息

PLoS One. 2013 Apr 23;8(4):e61508. doi: 10.1371/journal.pone.0061508. Print 2013.

Abstract

TLR2 specifically recognizes a wide range of ligands by homodimerizing or heterodimerizing with TLR1 or TLR6. However, the molecular basis of the specific signalling transduction induced by TLR2 homodimerization or heterodimerization with TLR1 or TLR6 is largely unknown. In this study, we found three amino acid residues, two (663L and 688N) outside and one (681P) inside the BB loop, which were conserved in all of the TLRs, except for the TLR3 toll/IL-1R(TIR) domain. The responsiveness of human TLR2/2, TLR2/1 or TLR2/6 was completely lost when 663L and 688N were replaced with the corresponding amino acid residues in the TLR3 TIR domain, respectively. However, the response of TLR2 (P681A) to the high concentration of TLR2/TLR6 agonist was almost intact, but the activity of TLR2 (P681A) was greatly reduced when stimulated with the TLR2/1 agonist or the TLR2/2 agonist. Although the surface expression of TLR2 (L663E) was sharply reduced, both the intracellular distribution and the surface expression of all of the other TLR2 mutants were unchanged. The ability of all three TLR2 mutants to recruit MyD88, was consistent with their responsivenesses. Computer modelling indicated that the surface negative charge of all of the TLR2 mutants' BB loops was reduced. Thus, our data demonstrated that the 663L and 688N residues outside of the BB loop were essential for the responsiveness of TLR2/2, TLR2/1 and TLR2/6, but the 681P residue inside of the BB loop exhibited divergent roles in TLR2/2, TLR2/1 and TLR2/6 signalling transduction, thereby providing clues regarding the specific signalling transduction of TLR2/2, TLR2/1 and TLR2/6.

摘要

TLR2 通过与 TLR1 或 TLR6 同源二聚化或异源二聚化特异性识别广泛的配体。然而,TLR2 与 TLR1 或 TLR6 同源二聚化或异源二聚化诱导的特异性信号转导的分子基础在很大程度上仍是未知的。在这项研究中,我们发现 TLR2 中的三个氨基酸残基(663L 和 688N 在 BB 环外,681P 在 BB 环内)在除 TLR3 的 toll/IL-1R(TIR)结构域外的所有 TLR 中都是保守的。当 663L 和 688N 分别被 TLR3 TIR 结构域中的相应氨基酸残基取代时,人 TLR2/2、TLR2/1 或 TLR2/6 的反应性完全丧失。然而,TLR2(P681A)对 TLR2/TLR6 激动剂高浓度的反应几乎完整,但当用 TLR2/1 激动剂或 TLR2/2 激动剂刺激时,TLR2(P681A)的活性大大降低。尽管 TLR2(L663E)的表面表达急剧降低,但所有其他 TLR2 突变体的细胞内分布和表面表达都没有改变。所有三种 TLR2 突变体招募 MyD88 的能力与其反应性一致。计算机建模表明,所有 TLR2 突变体的 BB 环表面负电荷都减少了。因此,我们的数据表明,BB 环外的 663L 和 688N 残基对于 TLR2/2、TLR2/1 和 TLR2/6 的反应性是必需的,但 BB 环内的 681P 残基在 TLR2/2、TLR2/1 和 TLR2/6 信号转导中表现出不同的作用,从而为 TLR2/2、TLR2/1 和 TLR2/6 的特异性信号转导提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e90/3634009/d4a9350b34b7/pone.0061508.g001.jpg

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