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Mechanism of thiolate-disulfide interchange reactions in biochemistry

机译:生物化学中硫醇盐-二硫键交换反应的机理

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[GRAPHICS] Both density functional theory (DFT) (B3LYP) and CCSD ab initio calculations were employed in a theoretical investigation of the mechanism of thiolate-disulfide exchange reactions. The reaction pathway for degenerate thiolate-disulfide exchange reactions with dimethyl disulfide has been shown to proceed through a S(N)2-like transition structure that is very close in energy to the corresponding trisulfur anionic intermediate ([S delta--S-S delta-]). When relatively small substituents are involved, the level of theory must be increased to CCSD to make this rather subtle mechanistic distinction. With the more sterically hindered exchange reaction involving t-butyl mercaptide and di-t-butyl disulfide, the potential energy surface exhibits a distinct preference for the S(N)2 displacement pathway with an activation barrier of 9.8 kcal/mol. When corrections for solvent polarity are included (COSMO), an SN2 mechanism is also implicated in both polar and nonpolar solvents. DFT studies on thiolate-disulfide exchange, when the substituent is a model peptide, strongly support the intermediacy of a trisulfur intermediate that lies 10.7 kcal/mol below isolated reactants. A well depth of this magnitude should provide a sufficient lifetime of the intermediate to accommodate the requisite conformational adjustments that accompanies formation of the new disulfide bond.
机译:[图形]密度泛函理论(DFT)(B3LYP)和CCSD从头算都用于硫醇盐-二硫键交换反应机理的理论研究。与二甲基二硫键发生简并的硫醇盐-二硫键交换反应的反应路径已显示出通过S(N)2-样过渡结构进行,该结构的能量与相应的三硫阴离子中间体非常接近([S delta-SS delta- ])。当涉及相对较小的取代基时,必须将理论水平提高到CCSD,以使这种相当微妙的机械区别。由于涉及叔丁基硫醇盐和二叔丁基二硫化物的更受空间阻碍的交换反应,势能表面对S(N)2置换途径表现出明显的偏爱,其激活势垒为9.8 kcal / mol。当包括对溶剂极性的校正(COSMO)时,极性和非极性溶剂都涉及SN2机制。当取代基是模型肽时,DFT研究硫醇盐-二硫键交换时,强烈支持了三硫中间体的中间体,该中间体比分离的反应物低10.7 kcal / mol。该量级的井深度应提供足够的中间体寿命,以适应伴随新的二硫键形成的必要构象调整。

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