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Proline cis-​trans isomerization and its implications for the dimerization of analogues of cyclopeptide stylostatin 1: a combined computational and experimental study

机译:脯氨酸顺反异构体及其对环肽抑菌素类似物二聚体的影响:结合计算和实验研究

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摘要

Cis and trans proline conformers are often associated with dramatic changes in the biological function of peptides. A slow equilibrium between cis and trans Ile-Pro amide bond conformers occurs in constrained derivatives of the native marine cyclic heptapeptide stylostatin 1 (cyclo-(NSLAIPF)), a potential anticancer agent. In this work, four cyclopeptides, cyclo-(NSTAIPF), cyclo-(KSTAIPF), cyclo-(RSTAIPF) and cyclo-(DSTAIPF), which are structurally related to stylostatin 1, are experimentally and computationally examined in order to assess the effect of residue mutations on the cis-trans conformational ratio and the apparent capacity to form dimeric aggregates. Primarily, cyclo-(KSTAIPF) and cyclo-(RSTAIPF) showed specific trends in circular dichroism, MALDI-TOF and HPLC purification experiments, which suggests the occurrence of peptide dimerization. Meanwhile, the NMR spectrum of cyclo-(KSTAIPF) indicates that this cyclopeptide exists in the two slow-exchange families of conformations mentioned above. Molecular dynamics simulations combined with quantum mechanical calculations have shed light on the factors governing the cis/trans conformational ratio. In particular, we have found that residue mutations affect the internal hydrogen bond pattern which ultimately tunes the cis/trans conformational ratio and that only trans conformers are capable of aggregating due to the shape complementarity of the two subunits.
机译:顺式和反式脯氨酸构象异构体通常与肽的生物学功能发生巨大变化有关。顺式和反式-Ile-Pro酰胺键构象异构体之间的缓慢平衡发生在天然海洋环七肽触抑素1(环-(NSLAIPF))(一种潜在的抗癌药)的受限衍生物中。在这项工作中,通过实验和计算研究了结构上与触控素1相关的四种环肽,即环(NSTAIPF),环(KSTAIPF),环(RSTAIPF)和环(DSTAIPF),以评估其作用。残基突变对顺反构象比和形成二聚体聚集体的表观能力的影响。最初,环-(KSTAIPF)和环-(RSTAIPF)在圆二色性,MALDI-TOF和HPLC纯化实验中显示出特定的趋势,这表明肽二聚化的发生。同时,环-(KSTAIPF)的NMR谱表明该环肽存在于上述两个慢交换构象家族中。分子动力学模拟与量子力学计算相结合,揭示了控制顺式/反式构象比的因素。特别地,我们发现残基突变影响内部氢键模式,该模式最终调节了顺式/反式构象比,并且由于两个亚基的形状互补,仅反式构象体能够聚集。

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