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A Structure for the Trimeric MHC Class II-associated Invariant Chain Transmembrane Domain.

机译:三聚体MHC II类相关的恒定链跨膜结构域的结构。

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摘要

The major histocompatibility complex (MHC)-associated invariant chain (Ii) contains a single transmembrane domain that forms trimers. Ii is involved in the assembly of the MHC and antigen presentation, and is thus central to the function of the immune system. Here, we show by attenuated total reflectance, Fourier transform infrared (ATR-FTIR) spectroscopy that the transmembrane domain is alpha-helical and we provide a structural model of the transmembrane domain obtained by a combination of site-specific infrared dichroism and molecular dynamics (MD) simulations. This work resolves the backbone structure of a transmembrane peptide by multiple 13C&z.dbnd;18O labelling at ten different residues. A second purely computational approach, based on MD simulations of Ii transmembrane homologous sequences, yields a similar structure that is consistent with our experimental results. The structure presented forms a left-handed coiled coil with an average helix tilt of 13(+/-6) degrees; the residue Gln47 implicated in trimer formation forms strong interhelical contacts, Thr50 points to the inside of the trimeric coil and forms a network of hydrogen bonds.
机译:主要组织相容性复合体(MHC)相关的恒定链(Ii)包含一个形成三聚体的跨膜结构域。 Ii参与MHC的组装和抗原呈递,因此对于免疫系统的功能至关重要。在这里,我们通过衰减的全反射率,傅立叶变换红外(ATR-FTIR)光谱表明,跨膜结构域是α螺旋结构,并且我们提供了结合位点特异性红外二向色性和分子动力学获得的跨膜结构域的结构模型MD)模拟。这项工作通过在十个不同的残基处进行多个13C和18O标记来解析跨膜肽的骨架结构。第二种纯计算方法是基于II跨膜同源序列的MD模拟得出的,其相似结构与我们的实验结果一致。呈现的结构形成一个左手线圈,平均螺旋倾斜度为13(+/- 6)度;与三聚体形成有关的残基Gln47形成强螺旋间接触,Thr50指向三聚体线圈的内部并形成氢键网络。

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