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Lipid-binding activity of intrinsically unstructured cytoplasmic domains of multichain immune recognition receptor signaling subunits

机译:多链免疫识别受体信号亚基的内在非结构化胞质域的脂质结合活性

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摘要

Multichain immune recognition receptors (MIRRs) found on the surface of T cells, B cells, mast cells, natural killer cells, basophils, and other immune cells, are formed by the association of several single-pass transmembrane proteins, with immunoglobulin-like ligand recognition domains and signal-transducing domains present on separate subunits. The MIRR signaling subunits all have cytoplasmic domains containing one or more copies of an immunoreceptor tyrosine-based activation motif (ITAM), tyrosine residues of which are phosphorylated upon receptor engagement in an early and obligatory event in the signaling cascade. Despite the proximity to the cell membrane and crucial role in transmembrane signal transduction, little is known about the structure and lipid-binding activity of the ITAM-containing cytoplasmic domains. Here we investigate the conformation and lipid-binding activity of several MIRR cytoplasmic domains, namely T cell receptor ζcyt, CD3εcyt, CD3δcyt, and CD3γcyt, B cell receptor Igαcyt and Igβcyt, and Fc receptor FcεRIγcyt, using purified recombinant proteins. Secondary structure prediction analysis and experimental circular dichroism spectra identify each of these cytoplasmic domains as natively unfolded proteins. We also report that ζcyt, CD3εcyt, and FcεRIγcyt bind to acidic and mixed phospholipid vesicles and that the binding strength correlates with the protein net charge and the presence of clustered basic amino acid residues. Circular dichroism analysis reveals the lack of secondary structure for these domains in lipid-bound form. Phosphorylation of ζcyt and FcεRIγcyt does not alter their random-coil conformation but weakens binding to membranes. The implications of these results for transmembrane signal transduction by immune receptors are discussed.
机译:T细胞,B细胞,肥大细胞,自然杀伤细胞,嗜碱性粒细胞和其他免疫细胞表面上发现的多链免疫识别受体(MIRR)是由几种单程跨膜蛋白与免疫球蛋白样配体缔合而形成的识别域和信号传导域存在于单独的亚基上。 MIRR信号亚基均具有包含一个或多个拷贝的基于免疫受体酪氨酸的活化基序(ITAM)的胞质域,在信号级联的早期和强制性事件中,酪氨酸残基在受体参与时被磷酸化。尽管邻近细胞膜并且在跨膜信号转导中起关键作用,但对含ITAM的胞质结构域的结构和脂质结合活性知之甚少。在这里,我们使用纯化的重组蛋白研究了几个MIRR细胞质结构域的构象和脂质结合活性,即T细胞受体cycyt,CD3εcyt,CD3δcyt和CD3γcyt,B细胞受体Igαcyt和Igβcyt以及Fc受体FcεRIγcyt。二级结构预测分析和实验性圆二色性光谱将这些胞质结构域中的每一个识别为天然未折叠的蛋白质。我们还报告了ζcyt,CD3εcyt和FcεRIγcyt与酸性和混合磷脂囊泡结合,并且结合强度与蛋白质净电荷和成簇的碱性氨基酸残基的存在相关。圆二色性分析揭示了脂质结合形式的这些结构域缺乏二级结构。 ζcyt和FcεRIγcyt的磷酸化不会改变它们的随机螺旋构象,但会削弱与膜的结合。讨论了这些结果对免疫受体跨膜信号转导的影响。

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