Xu Jing, Wang Meng, Fu Yanbin, Zhang Cong, Kuang Zhe, Bian Shan, Wan Rui, Qu Shen, Zhang Chao
Fundamental Research Center, Shanghai YangZhi Rehabilitation Hospital (Shanghai Sunshine Rehabilitation Center), School of Life Sciences and Technology, Tongji University, Shanghai 201619, China.
Department of Plastic and Reconstructive Surgery, Shanghai Institute of Precision Medicine, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200011, China.
Biology (Basel). 2022 Jun 7;11(6):874. doi: 10.3390/biology11060874.
As a member of the melanocortin receptor family, melanocortin 4 receptor (MC4R) plays a critical role in regulating energy homeostasis and feeding behavior, and has been proven as a promising therapeutic target for treating severe obesity syndrome. Numerous studies have demonstrated that central MC4R signaling is significantly affected by melanocortin receptor accessory protein 2 (MRAP2) in humans, mice and zebrafish. MRAP2 proteins exist as parallel or antiparallel dimers on the plasma membrane, but the structural insight of dual orientations with the pharmacological profiles has not yet been fully studied. Investigation and optimization of the conformational topology of MRAP2 are critical for the development of transmembrane allosteric modulators to treat MC4R-associated disorders. In this study, we synthesized a brand new single transmembrane protein by reversing wild-type mouse and zebrafish MRAP2 sequences and examined their dimerization, interaction and pharmacological activities on mouse and zebrafish MC4R signaling. We showed that the reversed zebrafish MRAPa exhibited an opposite function on modulating zMC4R signaling and the reversed mouse MRAP2 lost the capability for regulating MC4R trafficking but exhibited a novel function for cAMP cascades, despite proper expression and folding. Taken together, our results provided new biochemical insights on the oligomeric states and membrane orientations of MRAP2 proteins, as well as its pharmacological assistance for modulating MC4R signaling.
作为黑皮质素受体家族的一员,黑皮质素4受体(MC4R)在调节能量平衡和进食行为中起关键作用,并且已被证明是治疗严重肥胖综合征的一个有前景的治疗靶点。大量研究表明,在人类、小鼠和斑马鱼中,黑皮质素受体辅助蛋白2(MRAP2)会显著影响中枢MC4R信号传导。MRAP2蛋白以平行或反平行二聚体的形式存在于质膜上,但关于这两种方向与药理特性的结构见解尚未得到充分研究。对MRAP2构象拓扑结构的研究和优化对于开发治疗MC4R相关疾病的跨膜变构调节剂至关重要。在本研究中,我们通过反转野生型小鼠和斑马鱼的MRAP2序列合成了一种全新的单跨膜蛋白,并研究了它们在小鼠和斑马鱼MC4R信号传导中的二聚化、相互作用及药理活性。我们发现,尽管反转的斑马鱼MRAPa表达和折叠正常,但在调节斑马鱼MC4R信号传导方面表现出相反的功能,而反转的小鼠MRAP2失去了调节MC4R转运的能力,但对cAMP级联反应表现出一种新功能。综上所述,我们的结果为MRAP2蛋白的寡聚状态和膜方向提供了新的生化见解,以及其对调节MC4R信号传导的药理辅助作用。