Bedi Shimpi, Hostetler Heather A, Rider Stanley Dean
Department of Biochemistry & Molecular Biology, Boonshoft School of Medicine, Wright State University, Dayton, OH 45435.
Nucl Receptor Res. 2017;4. doi: 10.11131/2017/101302.
Liver X receptor alpha (LXRα) is crucial for the maintenance of lipid and cholesterol homeostasis. Ligand binding and dimerization with retinoid X receptor (RXR) or peroxisome proliferator-activated receptor (PPAR) is required for forming active DNA binding complexes leading to gene regulation. Structure based prediction and solvent accessibility of LXRα LBD shows that residues H383, E387, H390, L414, and R415 which are located in helices 9 and 10 may be critical for mediating protein-protein interactions. In this study, LXRα interface residues were individually mutated to determine their effects on ligand binding, protein-protein association, subcellular localization, and transactivation activity. LXRα L414R and R415A lacked binding to T-0901317, but retained binding to 25-Hydroxycholesterol. assay and a cell based assay demonstrated that LXRα L414R was specifically impaired for interactions with RXRα but not PPARα suggesting that charge reversal at the interface provides selectivity to LXRα dimerization. Furthermore, binding of LXRα L414R or R415A with PPARα exhibited minimal conformational changes in the dimer secondary structure. Interestingly, all LXRα mutants exhibited lower levels of ligand dependent luciferase activity driven by the SREBP-1c or ApoA1 promoter. Taken together, our data demonstrates that intact hydrophobic interactions and salt bridges at the interface mediate efficient ligand-dependent transactivation activities.
肝X受体α(LXRα)对于维持脂质和胆固醇稳态至关重要。与视黄酸X受体(RXR)或过氧化物酶体增殖物激活受体(PPAR)的配体结合及二聚化是形成导致基因调控的活性DNA结合复合物所必需的。基于结构的LXRα配体结合域预测和溶剂可及性表明,位于螺旋9和10中的残基H383、E387、H390、L414和R415可能对介导蛋白质-蛋白质相互作用至关重要。在本研究中,LXRα界面残基被逐个突变,以确定它们对配体结合、蛋白质-蛋白质缔合、亚细胞定位和反式激活活性的影响。LXRα L414R和R415A缺乏与T-0901317的结合,但保留了与25-羟基胆固醇的结合。一项实验和一项基于细胞的实验表明,LXRα L414R与RXRα的相互作用受到特异性损害,但与PPARα的相互作用不受影响,这表明界面处的电荷反转赋予了LXRα二聚化选择性。此外,LXRα L414R或R415A与PPARα的结合在二聚体二级结构中表现出最小的构象变化。有趣的是,所有LXRα突变体在由SREBP-1c或ApoA1启动子驱动的配体依赖性荧光素酶活性水平上均较低。综上所述,我们的数据表明,界面处完整的疏水相互作用和盐桥介导了有效的配体依赖性反式激活活性。