Vašl Jožica, Oblak Alja, Peternelj Tina T, Klett Javier, Martín-Santamaría Sonsoles, Gioannini Theresa L, Weiss Jerrold P, Jerala Roman
Department of Biotechnology, National Institute of Chemistry, 1000 Ljubljana, Slovenia;
Center for Biological Research, Superior Council for Scientific Research, 28040 Madrid, Spain;
J Immunol. 2016 Mar 1;196(5):2309-18. doi: 10.4049/jimmunol.1502074. Epub 2016 Jan 29.
Myeloid differentiation factor 2 (MD-2) is an extracellular protein, associated with the ectodomain of TLR4, that plays a critical role in the recognition of bacterial LPS. Despite high overall structural and functional similarity, human (h) and murine (m) MD-2 exhibit several species-related differences. hMD-2 is capable of binding LPS in the absence of TLR4, whereas mMD-2 supports LPS responsiveness only when mMD-2 and mTLR4 are coexpressed in the same cell. Previously, charged residues at the edge of the LPS binding pocket have been attributed to this difference. In this study, site-directed mutagenesis was used to explore the hydrophobic residues within the MD-2 binding pocket as the source of functional differences between hMD-2 and mMD-2. Whereas decreased hydrophobicity of residues 61 and 63 in the hMD-2 binding pocket retained the characteristics of wild-type hMD-2, a relatively minor change of valine to alanine at position 135 completely abolished the binding of LPS to the hMD-2 mutant. The mutant, however, retained the LPS binding in complex with TLR4 and also cell activation, resulting in a murine-like phenotype. These results were supported by the molecular dynamics simulation. We propose that the residue at position 135 of MD-2 governs the dynamics of the binding pocket and its ability to accommodate lipid A, which is allosterically affected by bound TLR4.
髓样分化因子2(MD-2)是一种细胞外蛋白,与Toll样受体4(TLR4)的胞外结构域相关,在细菌脂多糖(LPS)的识别中起关键作用。尽管人源(h)和鼠源(m)MD-2在整体结构和功能上高度相似,但它们仍表现出一些与物种相关的差异。hMD-2能够在没有TLR4的情况下结合LPS,而mMD-2仅在mMD-2和mTLR4在同一细胞中共表达时才支持LPS反应性。此前,LPS结合口袋边缘的带电荷残基被认为是造成这种差异的原因。在本研究中,采用定点诱变来探究MD-2结合口袋内的疏水残基,作为hMD-2和mMD-2功能差异的来源。虽然hMD-2结合口袋中61位和63位残基疏水性的降低保留了野生型hMD-2的特性,但135位缬氨酸到丙氨酸的相对微小变化完全消除了LPS与hMD-2突变体的结合。然而,该突变体保留了与TLR4复合时的LPS结合能力以及细胞激活能力,从而产生类似小鼠的表型。这些结果得到了分子动力学模拟的支持。我们提出,MD-2 135位的残基控制着结合口袋的动力学及其容纳脂多糖A的能力,而脂多糖A会受到结合的TLR4的变构影响。