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首页> 外文期刊>Frontiers in Endocrinology >Conservation of Three-Dimensional Helix-Loop-Helix Structure through the Vertebrate Lineage Reopens the Cold Case of Gonadotropin-Releasing Hormone-Associated Peptide
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Conservation of Three-Dimensional Helix-Loop-Helix Structure through the Vertebrate Lineage Reopens the Cold Case of Gonadotropin-Releasing Hormone-Associated Peptide

机译:通过脊椎动物谱系的三维螺旋环螺旋结构的保护重新打开性腺激素释放激素相关肽的寒冷案例。

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GnRH-associated peptide (GAP) is the C-terminal portion of the gonadotropin-releasing hormone (GnRH) preprohormone. Although it was reported in mammals that GAP may act as a prolactin-inhibiting factor and can be co-secreted with GnRH into the hypophyseal portal blood, GAP has been practically out of the research circuit for about 20 years. Comparative studies highlighted the low conservation of GAP primary amino acid sequences among vertebrates, contributing to consider that this peptide only participates in the folding or carrying process of GnRH. Considering that the three-dimensional (3D) structure of a protein may define its function, the aim of this study was to evaluate if GAP sequences and 3D structures are conserved in the vertebrate lineage. GAP sequences from various vertebrates were retrieved from databases. Analysis of primary amino acid sequence identity and similarity, molecular phylogeny, and prediction of 3D structures were performed. Amino acid sequence comparison and phylogeny analyses confirmed the large variation of GAP sequences throughout vertebrate radiation. In contrast, prediction of the 3D structure revealed a striking conservation of the 3D structure of GAP1 (GAP associated with the hypophysiotropic type 1 GnRH), despite low amino acid sequence conservation. This GAP1 peptide presented a typical helix-loop-helix (HLH) structure in all the vertebrate species analyzed. This HLH structure could also be predicted for GAP2 in some but not all vertebrate species and in none of the GAP3 analyzed. These results allowed us to infer that selective pressures have maintained GAP1 HLH structure throughout the vertebrate lineage. The conservation of the HLH motif, known to confer biological activity to various proteins, suggests that GAP1 peptides may exert some hypophysiotropic biological functions across vertebrate radiation.
机译:GnRH相关肽(GAP)是促性腺激素释放激素(GnRH)前激素的C端部分。尽管在哺乳动物中有报道说,GAP可能是一种催乳激素抑制因子,并且可以与GnRH共同分泌到垂体门脉血中,但大约20年以来,GAP实际上已经脱离了研究范围。比较研究强调了脊椎动物中GAP一级氨基酸序列的低保守性,这有助于考虑到该肽仅参与GnRH的折叠或携带过程。考虑到蛋白质的三维(3D)结构可以定义其功能,本研究的目的是评估脊椎动物谱系中GAP序列和3D结构是否保守。从数据库中检索出各种脊椎动物的GAP序列。进行了一级氨基酸序列同一性和相似性的分析,分子系统发育和3D结构的预测。氨基酸序列比较和系统发育分析证实了整个脊椎动物辐射中GAP序列的巨大差异。相反,尽管氨基酸序列保守性低,但对3D结构的预测揭示了GAP1(GAP与低亲1型GnRH相关的GAP)的3D结构显着保守。该GAP1肽在所有分析的脊椎动物中均表现出典型的螺旋-环-螺旋(HLH)结构。 HLH结构还可以在某些但不是全部脊椎动物物种中以及在没有分析的GAP3中针对GAP2预测。这些结果使我们能够推断选择性压力在整个脊椎动物谱系中都维持了GAP1 HLH结构。已知赋予各种蛋白质生物活性的HLH基序的保守性表明,GAP1肽可能在整个脊椎动物辐射中发挥某些生理上的生物学功能。

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