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Functional Assessment of Residues in the Amino- and Carboxyl-Termini of Crustacean Hyperglycemic Hormone (CHH) in the Mud Crab Scylla olivacea Using Point-Mutated Peptides

机译:使用点突变肽功能评估泥蟹硬壳蟹中甲壳动物高血糖激素(CHH)氨基和羧基末端残基的功能评估

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摘要

To assess functional importance of the residues in the amino- and carboxyl-termini of crustacean hyperglycemic hormone in the mud crab Scylla olivacea (Sco-CHH), both wild-type and point-mutated CHH peptides were produced with an amidated C-terminal end. Spectral analyses of circular dichroism, chromatographic retention time, and mass spectrometric analysis of the recombinant peptides indicate that they were close in conformation to native CHH and were produced with the intended substitutions. The recombinant peptides were subsequently used for an in vivo hyperglycemic assay. Two mutants (R13A and I69A rSco-CHH) completely lacked hyperglycemic activity, with temporal profiles similar to that of vehicle control. Temporal profiles of hyperglycemic responses elicited by 4 mutants (I2A, F3A, D12A, and D60A Sco-CHH) were different from that elicited by wild-type Sco-CHH; I2A was unique in that it exhibited significantly higher hyperglycemic activity, whereas the remaining 3 mutants showed lower activity. Four mutants (D4A, Q51A, E54A, and V72A rSco-CHH) elicited hyperglycemic responses with temporal profiles similar to those evoked by wild-type Sco-CHH. In contrast, the glycine-extended version of V72A rSco-CHH (V72A rSco-CHH-Gly) completely lost hyperglycemic activity. By comparing our study with previous ones of ion-transport peptide (ITP) and molt-inhibiting hormone (MIH) using deleted or point-mutated mutants, detail discussion is made regarding functionally important residues that are shared by both CHH and ITP (members of Group I of the CHH family), and those that discriminate CHH from ITP, and Group-I from Group-II peptides. Conclusions summarized in the present study provide insights into understanding of how functional diversification occurred within a peptide family of multifunctional members.
机译:为了评估泥蟹Scylla olivacea(Sco-CHH)中甲壳类高血糖激素的氨基和羧基末端残基的功能重要性,制备了带有酰胺化C末端的野生型和点突变CHH肽。圆二色性的光谱分析,色谱保留时间和重组肽的质谱分析表明,它们与天然CHH构象非常接近,并具有预期的取代基。重组肽随后用于体内高血糖测定。两个突变体(R13A和I69A rSco-CHH)完全缺乏高血糖活性,其时间特征与媒介物对照相似。 4个突变体(I2A,F3A,D12A和D60A Sco-CHH)引起的高血糖反应的时间变化与野生型Sco-CHH引起的时间变化不同。 I2A的独特之处在于它表现出明显更高的高血糖活性,而其余3个突变体则表现出更低的活性。四个突变体(D4A,Q51A,E54A和V72A rSco-CHH)引发了高血糖反应,其时间特征与野生型Sco-CHH引起的相似。相反,V72A rSco-CHH(V72A rSco-CHH-Gly)的甘氨酸扩展版本完全失去了高血糖活性。通过将我们的研究与以前使用缺失或点突变的突变体的离子转运肽(ITP)和抑制蜕皮激素(MIH)的研究进行比较,详细讨论了CHH和ITP(成员为CHH家族的I组),以及将CHH与ITP区别开的组,以及将IH与II组肽段区分的组。本研究总结的结论为了解多功能成员的肽家族中功能多样化如何发生提供了见解。

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