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Preferential activation by galanin 1-15 fragment of the GalR1 protomer of a GalR1-GalR2 heteroreceptor complex

机译:通过Galanin 1-15片段的Galanin 1-15片段的优先激活Galr1-Galr2异质植物复合物的Galr1强子

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The three cloned galanin receptors show a higher affinity for galanin than for galanin N-terminal fragments. Galanin fragment (1-15) binding sites were discovered in the rat Central Nervous System, especially in dorsal hippocampus, indicating a relevant role of galanin fragments in central galanin communication. The hypothesis was introduced that these N-terminal galanin fragment preferring sites are formed through the formation of GalR1-GalR2 heteromers which may play a significant role in mediating galanin fragment (1-15) signaling. In HEK293T cells evidence for the existence of GalR1-GalR2 heteroreceptor complexes were obtained with proximity ligation and BRET2 assays. PLA positive blobs representing GalR1-GalR2 heteroreceptor complexes were also observed in the raphe-hippocampal system. In CRE luciferase reporter gene assays, galanin (1-15) was more potent than galanin (1-29) in inhibiting the forskolin-induced increase of luciferase activity in GalR1-GalR2 transfected cells. The inhibition of CREB by 50 nM of galanin (1-15) and of galanin (1-29) was fully counteracted by the non-selective galanin antagonist M35 and the selective GalR2 antagonist M871. These results suggested that the orthosteric agonist binding site of GalR1 protomer may have an increased affinity for the galanin (115) vs galanin (1-29) which can lead to its demonstrated increase in potency to inhibit CREB vs galanin (1-29). In contrast, in NFAT reporter gene assays galanin (1-29) shows a higher efficacy than galanin (115) in increasing Gq/11 mediated signaling over the GalR2 of these heteroreceptor complexes. This disbalance in the signaling of the GalR1-GalR2 heteroreceptor complexes induced by galanin (1-15) may contribute to depression-like actions since GalR1 agonists produce such effects. (C) 2014 Elsevier Inc. All rights reserved.
机译:三个克隆的环肽受体对环氮胺蛋白具有比环烷N-末端片段更高的亲和力。在大鼠中枢神经系统中发现了甘肽片段(1-15)结合位点,特别是在背侧海马中,表明甘肽片段在中央环素通信中的相关作用。引入了假设,通过形成Galr1-Galr2异构体形成这些N-末端的甘醇蛋白片段偏好位点,其在介导的环肽片段(1-15)信号传导中可能发挥重要作用。在HEK293T中,通过接近结扎和BRET2测定,获得存在Galr1-Galr2异质酶复合物的存在证据。在Raphe-Hippodply系统中,还观察到代表Galr1-Galr2异质聚合物的PLA正片。在Cre Luciferase报道基因测定中,甘丙肽(1-15)比甘醇蛋白(1-29)更有效地抑制Galr1-Galr2转染的细胞中的kokolin诱导的荧光素酶活性的增加。通过非选择性甘油蛋白拮抗剂M35和选择性加仑拮抗剂M871完全抵消CREB抑制50nm的甘肽(1-15)和环肽(1-29)。这些结果表明Galr1重选聚物的正向激动剂结合位点可能对环氮胺蛋白(115)的亲和力增加了对甘肽(1-29)的亲和力,这可能导致其抑制CREB ​​vs Galanin(1-29)的效力增加。相反,在NFAT报告中,基因分析结果表明,比环烷(115)增加了较高的效率,所述疗效增加在这些异质酶复合物的GALR 2上介导的GQ / 11介导的信号传导。这种在Galanin(1-15)诱导的GalR1-Galr2异质粉化合物的信号传导中的不平衡可能导致抑郁状作用,因为Galr1激动剂产生这种作用。 (c)2014年elsevier Inc.保留所有权利。

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