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All-cis cyclic peptides

机译:全顺式环肽

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Amide bonds -NH-CO- preferentially exist in trans conformations, the cis conformation being thermodynamically unfavored with respect to the trans by about 2 kcal/mol. Yet, the main reason most proteins or peptides cannot be made from cis-peptide plaques only lies in that connecting them into open chains appears to be sterically impracticable. It is possible, however, to build all-cis cyclic peptides in which all cis-plaques are efficiently locked. The present work examines, through quantum calculations, the structural and energetic issues associated with these peculiar arrangements. Systematic exploration at DFT-B3LYP level of the potential-energy surfaces for all-cis cyclopolyglycines cG(n)(c) (n = 2-10,15), and to a lesser extent, for all-cis cyclopolyalanines and all-cis cyclopolyphenylalanines confirms that all these structures are true minima. Optimal ring size occurs around eight peptide units, resulting in planar cG(7)(c), cG(8)(c), and cG(g)(c). 7 8 91 In smaller systems, the ring strain is relieved through nonplanar cup-like distortions, particularly in cG(6)(c).. From 10 peptide units and beyond, the ring framework distorts into a saddle-edge shape. These molecules disclose some molecular flexibility, as combinatorial tilting of the plaques may give sets of minima close in energy. Indexes based on isodesmic reactions are used to estimate the energy for joining all-cis or alltrans plaques into cyclic peptides. One of them, the mean plaque-junction energy (MPJE) suggests that within sensible sizes from six peptide units and beyond, all-cis plaque association is almost equally favorable as all-trans one. The frame of radiating cis-amide bonds can be considered as defining a new kind of peptidic material, endowed with specific self-assembling properties.
机译:酰胺键-NH-CO-优先以反式构象存在,顺式构象相对于反式在热力学上不利于约2kcal / mol。然而,大多数蛋白质或肽不能由顺式肽斑制成的主要原因仅在于将它们连接成开放链似乎在空间上是不可行的。然而,有可能构建其中所有顺式噬菌斑均被有效锁定的全顺式环状肽。本工作通过量子计算来检验与这些特殊排列相关的结构和能量问题。在DFT-B3LYP水平上对全顺式环聚甘氨酸cG(n)(c)(n = 2-10,15)以及较小范围内的全顺式环聚丙氨酸和全顺式势能表面进行系统研究环聚苯丙氨酸证实所有这些结构都是最小的。最佳环大小出现在八个肽单元附近,从而导致平面cG(7)(c),cG(8)(c)和cG(g)(c)。 7 8 91在较小的系统中,环应变通过非平面的杯状扭曲而得以缓解,特别是在cG(6)(c)中。从10个肽单元及以后的单元,环框架扭曲成鞍边形。这些分子具有一定的分子柔韧性,因为斑块的组合倾斜可能会产生极小量的紧密能量。使用基于等渗反应的指标来估计将全顺式或全反噬菌斑连接到环肽中的能量。其中之一,平均噬菌斑连接能量(MPJE)表明,在六个肽单元及以上的合理大小内,全顺式噬菌斑缔合几乎与全反式噬菌斑缔合相似。辐射顺酰胺键的框架可以认为是定义了一种新型肽类材料,具有特殊的自组装特性。

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