Department of Chemistry, Hankuk University of Foreign Studies, Mohyeon, Yongin, 17035, Korea.
Protein Pept Lett. 2021;28(1):63-73. doi: 10.2174/0929866527666200525162928.
Obesity has emerged as a global public health challenge associated with increased risk of hyperlipidemia and hypertension. It contributes to high sympathetic activity and increased catecholamine levels. The hypothalamic melanocortin system is known to regulate the energy homeostasis. The role of melanocortin 4 receptor (MC4R) has been demonstrated pharmacologically and in animal studies, which showed that severe obesity in MC4R knockout mice was caused by increased food intake and decreased energy consumption. Over 70 multiple different mis- -sense and nonsense mutations in hMC4R have been found at a high frequency of 2-8% in severe early onset or hereditary obesity. The single amino acid variation (D90N) located in the second transmembrane domain (TM2) of MC4R results in accelerated growth and childhood onset obesity. Interestingly, the functional characterization of D90N hMC4R mutant TM2 (m-hMC4R-TM2) revealed normal cell surface expression and binding with agonist similar to the hMC4R wild-type TM2 (wt-hMC4R-TM2) but loss of signal transduction mediated via Gs/adenylyl cyclase activation. It is essential to delineate the three-dimensional structure of MC4Rs in order to elucidate their functional aspects.
In this study, we demonstrate the optimized expression and isolation of wt/m-hMC4R-TM2 proteins under different chemical cleavage reaction times and purification procedures via SDS precipitation. The solid-state NMR spectroscopy was carried out to study the structure of wt/m-hMC4R- TM2 protein in the anisotropic phospholipid bicelles.
The KSI-wt/m-hMC4R-TM2 fusion proteins developed in cell culture with LB medium. In order to isolate the expressed fusion protein from the cell, ultrasonication, Ni-NTA affinity chromatography, dialysis, and lyophilization techniques were used. Then, to obtain a protein with higher purity and higher yield, the CNBr chemical cleavage time was subdivided into 30 minutes, 1 h, 2 h, 3 h, and 4 h. Purification process was performed using FPLC, and 100 mM KCl and dialysis were used to remove the SDS. CD spectrometer, MALDI-TOF, solution-state NMR, and solid-state NMR were used to confirmed purity and structure of the wt/m-hMC4R-TM2.
The precipitation method was used to remove the SDS bound to proteins as KCl-SDS. We optimized the 2 h cleavage reaction times for both wt-hMC4R-TM2 and m-hMC4R-TM2 depending on the purity based on mass spectra and H-N HSQC spectra and the yield after final purification. The 1D H-N CP (Cross polarization) solid-state NMR spectra suggest that the wt/m-hMC4R- TM2 undergo rotational diffusion around a perpendicular axis along the bilayer normal.
We expressed wt/m-hMC4R-TM2 in E.coli and optimized the isolation and purification process, especially CNBr chemical cleavage time. The efficiency of KCl-SDS precipitation was confirmed via MALDI-TOF MS and the pure proteins obtained using this method were characterized by CD spectroscopy and solution-state NMR. The results of H-N HSQC spectra in solution- state NMR also show the probability for structural studies. The 1D H-N CP solid-state NMR spectra indicate that most of the residues in both the wt/m-hMC4R-TM2 peptides are integrated into the membrane.
肥胖已成为全球公共卫生挑战,与血脂异常和高血压风险增加相关。它导致交感神经活动增加和儿茶酚胺水平升高。已知下丘脑黑皮质素系统调节能量平衡。黑皮质素 4 受体 (MC4R) 的作用已通过药理学和动物研究得到证实,研究表明 MC4R 敲除小鼠的严重肥胖是由于食物摄入量增加和能量消耗减少引起的。在严重早发或遗传性肥胖症患者中,hMC4R 中已经发现了超过 70 种不同的错义和无义突变,其频率高达 2-8%。位于 MC4R 第二跨膜域 (TM2) 的单个氨基酸变异 (D90N) 导致生长加速和儿童期肥胖。有趣的是,D90N hMC4R 突变 TM2 (m-hMC4R-TM2) 的功能特征揭示了其细胞表面表达正常,与 hMC4R 野生型 TM2 (wt-hMC4R-TM2) 类似的激动剂结合,但通过 Gs/腺苷酸环化酶激活介导的信号转导丧失。阐明 MC4R 的三维结构对于阐明其功能方面至关重要。
本研究旨在通过 SDS 沉淀,在不同的化学裂解反应时间和纯化程序下,优化 wt/m-hMC4R-TM2 蛋白的表达和分离。通过固态 NMR 光谱研究 wt/m-hMC4R-TM2 蛋白在各向异性磷脂双体中的结构。
在 LB 培养基中用 KSI-wt/m-hMC4R-TM2 融合蛋白培养细胞。为了从细胞中分离表达的融合蛋白,使用了超声处理、Ni-NTA 亲和层析、透析和冻干技术。然后,为了获得更高纯度和更高产量的蛋白质,将 CNBr 化学裂解时间细分为 30 分钟、1 小时、2 小时、3 小时和 4 小时。使用 FPLC 进行纯化过程,使用 100 mM KCl 和透析去除 SDS。使用 CD 光谱仪、MALDI-TOF、溶液 NMR 和固态 NMR 确认 wt/m-hMC4R-TM2 的纯度和结构。
沉淀法用于去除与蛋白质结合的 SDS 作为 KCl-SDS。根据质谱和 H-N HSQC 谱以及最终纯化后的产率,我们优化了 wt-hMC4R-TM2 和 m-hMC4R-TM2 的 2 小时裂解反应时间。1D H-N CP(交叉极化)固态 NMR 谱表明,wt/m-hMC4R-TM2 沿双层法线围绕垂直轴进行旋转扩散。
我们在大肠杆菌中表达了 wt/m-hMC4R-TM2,并优化了分离和纯化过程,特别是 CNBr 化学裂解时间。通过 MALDI-TOF MS 证实了 KCl-SDS 沉淀的效率,并用这种方法获得的纯蛋白质通过 CD 光谱学和溶液 NMR 进行了表征。溶液 NMR 中的 H-N HSQC 谱的结果也表明了结构研究的可能性。1D H-N CP 固态 NMR 谱表明,wt/m-hMC4R-TM2 肽中的大多数残基都整合到了膜中。