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Bioactivity and structural properties of chimeric analogs of the starfish SALMFamide neuropeptides S1 and S2.

机译:海星SALMFamide神经肽S1和S2嵌合类似物的生物活性和结构特性。

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摘要

The starfish SALMFamide neuropeptides S1 (GFNSALMFamide) and S2 (SGPYSFNSGLTFamide) are the prototypical members of a family of neuropeptides that act as muscle relaxants in echinoderms. Comparison of the bioactivity of S1 and S2 as muscle relaxants has revealed that S2 is ten times more potent than S1. Here we investigated a structural basis for this difference in potency by comparing the bioactivity and solution conformations (using NMR and CD spectroscopy) of S1 and S2 with three chimeric analogs of these peptides. A peptide comprising S1 with the addition of S2's N-terminal tetrapeptide (Long S1 or LS1; SGPYGFNSALMFamide) was not significantly different to S1 in its bioactivity and did not exhibit concentration-dependent structuring seen with S2. An analog of S1 with its penultimate residue substituted from S2 (S1(T); GFNSALTFamide) exhibited S1-like bioactivity and structure. However, an analog of S2 with its penultimate residue substituted from S1 (S2(M); SGPYSFNSGLMFamide) exhibited loss of S2-type bioactivity and structural properties. Collectively, our data indicate that the C-terminal regions of S1 and S2 are the key determinants of their differing bioactivity. However, the N-terminal region of S2 may influence its bioactivity by conferring structural stability in solution. Thus, analysis of chimeric SALMFamides has revealed how neuropeptide bioactivity is determined by a complex interplay of sequence and conformation.
机译:海星SALMFamide神经肽S1(GFNSALMFamide)和S2(SGPYSFNSGLTFamide)是充当棘皮动物肌肉松弛剂的神经肽家族的原型成员。 S1和S2作为肌肉松弛剂的生物活性的比较表明,S2的效力是S1的十倍。在这里,我们通过比较S1和S2的生物活性和溶液构象(使用NMR和CD光谱)和这些肽的三种嵌合类似物,研究了这种效力差异的结构基础。包含S1加上S2的N末端四肽的肽(长S1或LS1; SGPYGFNSALMFamide)在生物活性方面与S1并无显着差异,并且与S2相比未表现出浓度依赖性的结构。 S1的倒数第二个残基被S2取代的类似物(S1(T); GFNSALTFamide)表现出类似S1的生物活性和结构。但是,S2的倒数第二个残基被S1取代的类似物(S2(M); SGPYSFNSGLMFamide)显示出S2型生物活性和结构特性的丧失。总的来说,我们的数据表明S1和S2的C端区域是它们不同生物活性的关键决定因素。但是,S2的N端区域可能会通过赋予溶液结构稳定性来影响其生物活性。因此,对嵌合SALMF酰胺的分析揭示了如何通过序列和构象的复杂相互作用来确定神经肽的生物活性。

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