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首页> 外文期刊>Journal of Molecular Biology >Analysis of protein dimerization and ligand binding of orphan receptor HNF4 alpha
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Analysis of protein dimerization and ligand binding of orphan receptor HNF4 alpha

机译:孤儿受体HNF4α的蛋白质二聚化和配体结合分析

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Hepatocyte nuclear factor 4 alpha (HNF4 alpha) (NR2A1), an orphan member of the nuclear receptor superfamily, binds DNA exclusively as a homodimer even though it is very similar in amino acid sequence to retinoid X receptor alpha (RXR alpha), which heterodimerizes readily with other receptors. Here, experimental analysis of residues involved in protein dimerization and studies on a reported ligand for HNF4 alpha are combined with a structural model of the HNF4 alpha ligand-binding domain (LBD) (residues 137 to 384). When K300 (in helix 9) and E327 (in helix 10) of HNF4 alpha 1 were converted to the analogous residues in RXR alpha (E390 and K417, respectively) the resulting construct did not heterodimerize with the wild-type HNF4 alpha, although it was still able to form homodimers and bind DNA. Furthermore, the double mutant did not heterodimerize with RXR or RAR but was still able to dimerize in solution with an HNF4a construct truncated at amino acid residue 268. This suggests that the charge compatibility between helices 9 and 10 is necessary, but not sufficient, to determine dimerization partners, and that additional residues in the HNF4 alpha LBD are also important in dimerization. The structural model of the HNF4 alpha LBD and an amino acid sequence alignment of helices 9 and 10 in various HNF4 and other receptor genes indicates that a K(X)(26)E motif can be used to identify HNF4 genes from other organisms and that a (E/D(X)(26-29)K/R) motif can be used to predict heterodimerization of many, but not all, receptors with RXR. In vitro analysis of another HNF4 alpha mutant construct indicates that helix 10 also plays a structural role in the conformational integrity of HNF4 alpha. The structural model and experimental analysis indicate that fatty acyl CoA thioesters, the proposed HNF4 alpha ligands, are not good candidates for a traditional ligand for HNF4 alpha. Finally, these results provide insight into the mechanism of action of naturally occurring mutations in the human HNF4 alpha gene found in patients with maturity onset diabetes of the young 1 (MODY1). (C) 2000 Academic Press. [References: 93]
机译:肝细胞核因子4 alpha(HNF4 alpha)(NR2A1)是核受体超家族的一个孤儿,尽管其氨基酸序列与类维生素A X受体alpha(RXR alpha)非常相似,但它仅以同型二聚体的形式结合DNA。容易与其他受体。在这里,将涉及蛋白质二聚化的残基的实验分析和对报告的HNF4α配体的研究与HNF4α配体结合域(LBD)的结构模型结合在一起(残基137至384)。当将HNF4 alpha 1的K300(在9螺旋中)和E327(在10螺旋中)转换为RXR alpha(分别为E390和K417)中的类似残基时,尽管没有,它与野生型HNF4 alpha异源二聚体。仍然能够形成同型二聚体并结合DNA。此外,该双突变体不会与RXR或RAR异源二聚体,但仍能在溶液中与在氨基酸残基268处截断的HNF4a构建体二聚。这表明螺旋9和10之间的电荷相容性是必要的,但不足以实现确定二聚化伙伴,并且HNF4 alpha LBD中的其他残基在二聚化中也很重要。 HNF4 alpha LBD的结构模型以及各种HNF4和其他受体基因中的螺旋9和10的氨基酸序列比对表明,K(X)(26)E主题可用于识别来自其​​他生物的HNF4基因,并且(E / D(X)(26-29)K / R)基序可用于预测许多但并非全部RXR受体的异源二聚化。另一个HNF4α突变体构建体的体外分析表明,螺旋10在HNF4α的构象完整性中也发挥了结构性作用。结构模型和实验分析表明,脂肪酰基CoA硫酯(拟议的HNF4α配体)不是HNF4α的传统配体的良好候选者。最后,这些结果提供了对在年轻1型成熟糖尿病患者中发现的人类HNF4α基因天然突变的作用机理的见解(MODY1)。 (C)2000学术出版社。 [参考:93]

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