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首页> 外文期刊>Journal of Molecular Evolution >Detecting site-specific physicochemical selective pressures: Applications to the class IHLA of the human major histocompatibility complex and the SRK of the plant sporophytic self-incompatibility system
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Detecting site-specific physicochemical selective pressures: Applications to the class IHLA of the human major histocompatibility complex and the SRK of the plant sporophytic self-incompatibility system

机译:检测特定于位点的理化选择压力:在人类主要组织相容性复合体的IHLA类和植物孢子自交不亲和系统的SRK中的应用

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Models of codon substitution are developed that incorporate physicochemical properties of amino acids. When amino acid sites are inferred to be under positive selection, these models suggest the nature and extent of the physicochemical properties under selection. This is accomplished by first partitioning the codons on the basis of some property of the encoded amino acids. This partition is used to parametrize the rates of property-conserving and property-altering base substitutions at the codon level by means of finite mixtures of Markov models that also account for codon and transition: transversion biases. Here, we apply this method to two positively selected receptors involved in ligand-recognition: the class I alleles of the human major histocompatibility complex (MHC) of known structure and the S-locus receptor kinase (SRK) of the sporophytic self-incompatibility system (SSI) in cruciferous plants (Brassicaceae), whose structure is unknown. Through likelihood ratio tests we demonstrate that at some sites, the positively selected MHC and SRK proteins are under physicochemical selective pressures to alter polarity, volume, polarity and/or volume, and charge to various extents. An empirical Bayes approach is used to identify sites that may be important for ligand recognition in these proteins.
机译:开发了结合氨基酸的物理化学性质的密码子取代模型。当推断出氨基酸位点处于阳性选择之下时,这些模型表明了所选择的理化性质的性质和程度。这是通过首先根据编码氨基酸的某些特性对密码子进行分配来实现的。该划分用于通过马尔可夫模型的有限混合来参数化密码子水平上的保守性和改变属性的碱基取代的速率,该混合也考虑了密码子和过渡:反转偏向。在这里,我们将这种方法应用于参与配体识别的两个积极选择的受体:已知结构的人类主要组织相容性复合体(MHC)的I类等位基因和孢子性自我失配系统的S-基因座受体激酶(SRK) (SSI)在十字花科植物(十字花科)中,其结构未知。通过似然比测试,我们证明了在某些位置上,正向选择的MHC和SRK蛋白处于物理化学选择压力下,以改变极性,体积,极性和/或体积,并在不同程度上充电。使用经验贝叶斯方法来鉴定对于这些蛋白质中的配体识别可能重要的位点。

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