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The computer modelling of human TRH receptor, TRH and TRH-like peptides

机译:人TRH受体,TRH和TRH样肽的计算机建模

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The aim of this work was to verify the possibility of interactions between the human TRH receptor (an integral membrane protein which belongs to family I of G-protein coupled receptors) and TRH-like peptides presented in the prostate gland. These peptides are characterized by substitution of basic amino acid histidine (related to authentic TRH) for neutral or acidic amino acid, such as glutamic acid, phenylalanine, glutamine or tyrosine. The physiological function of TRH-like peptides in peripheral tissues is not precisely known. However, according to our recent experiments, we assume the existence of a local hormonal network formed by TRH-like peptides and TSH in the prostate gland. The network can be associated with circulating thyroid and steroid hormones, and may represent a new regulatory mechanism influencing the proliferative ability of prostatic tissue. A similar network of authentic TRH and TSH was already found in the gastrointestinal tract. The experimentally determined 3D-structures of human TRH receptor (hTRHr) and TRH-like peptides are not available. From this point of view we used de novo modeling procedures of G-protein coupled receptors on an automated protein modeling server used at the Glaxo Wellcome Experimental Research (Geneva, Switzerland). 3D-structures of TRH-like peptides were determined with a computer program CORINA (written by the team of J. Gasteiger, Computer-Chemie-Centrum and Institute for Organic Chemistry, University of Erlangen-Nurenberg, Germany). The generated PDB files with 3D-coordinates were visualized with Swiss-Pdb Viewer Release 3.51 (Glaxo Wellcome). From recent results it is evident that polar amino acids belonging to the extracellular terminus of hTRHr transmembrane regions can participate in interactions between TRH and hTRHr. There is no direct evidence that TRH-like peptides interact with the presented hTRHr model. On the contrary, with respect to the similar 3D-shape and the identity of terminal amino acids, it appears that these interactions are highly probable as well as the nearly 100 % cross-reactions between TRH or TRH-like peptides and antibody specific against authentic TRH. Closed terminal amino acids (pyroglutamic acid and proline-amide) of TRH or TRH-like peptides are important for these interactions. Desamido-TRH or glutamyl metabolites will be repelled by the negative potential of ASP195 (E: D93) and GLU298 (G: E137).
机译:这项工作的目的是验证人类TRH受体(属于G蛋白偶联受体的家族I的完整膜蛋白)与前列腺中存在的TRH样肽之间相互作用的可能性。这些肽的特征在于用碱性氨基酸组氨酸(与真实的TRH有关)取代中性或酸性氨基酸,例如谷氨酸,苯丙氨酸,谷氨酰胺或酪氨酸。外周组织中TRH样肽的生理功能尚不清楚。但是,根据我们最近的实验,我们假设在前列腺中存在由TRH样肽和TSH形成的局部激素网络。该网络可能与循环甲状腺和类固醇激素相关,并且可能代表一种影响前列腺组织增殖能力的新调节机制。在胃肠道中已经发现了类似的真实TRH和TSH网络。无法通过实验确定人类TRH受体(hTRHr)和TRH样肽的3D结构。从这个角度出发,我们在葛兰素威康实验研究公司(瑞士日内瓦)使用的自动蛋白质建模服务器上使用了G蛋白偶联受体的从头建模程序。用计算机程序CORINA(由德国埃尔兰根-纽伦堡大学计算机化学中心和有机化学研究所的J. Gasteiger团队编写)确定TRH样肽的3D结构。生成的带有3D坐标的PDB文件可以通过Swiss-Pdb Viewer版本3.51(Glaxo Wellcome)进行可视化。从最近的结果可以看出,属于hTRHr跨膜区细胞外末端的极性氨基酸可以参与TRH和hTRHr之间的相互作用。没有直接证据表明TRH样肽与提出的hTRHr模型相互作用。相反,关于相似的3D形状和末端氨基酸的身份,似乎这些相互作用很可能发生,并且TRH或TRH样肽与特异于真实抗体的抗体之间几乎有100%的交叉反应TRH。 TRH或TRH样肽的封闭末端氨基酸(焦谷氨酸和脯氨酸酰胺)对于这些相互作用很重要。 ASP195(E:D93)和GLU298(G:E137)的负电位会排斥Desamido-TRH或谷氨酰胺代谢物。

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