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首页> 外文期刊>International Journal of Peptide Research and Therapeutics >X-Ray Crystal Structure of a Highly Functionalized Thiophene as a New Backbone Amide Linker for Solid-phase Peptide Synthesis. Relationship between Crystal Structure and Reactivity
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X-Ray Crystal Structure of a Highly Functionalized Thiophene as a New Backbone Amide Linker for Solid-phase Peptide Synthesis. Relationship between Crystal Structure and Reactivity

机译:高功能化噻吩的X射线晶体结构,作为固相肽合成的新骨架酰胺连接体。晶体结构与反应性之间的关系

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摘要

The development of new linkers (handles) for solid-phase synthesis provides new chemical opportunities for peptide synthesis. To understand the chemical properties of a recently developed backbone amide linker from a structural perspective, the crystal structure of S-((5-formyl-3,4-ethylenedioxy)thiophene-2-yl)-3-thiopropionic acid (T-BAL2) was studied. Specifically, we wished to address whether this highly substituted thiophene retained planarity in the aromatic ring as well as between the aromatic ring and the aldehyde carbonyl. Furthermore, we sought an explanation for the relatively low reactivity in reductive aminations of the thienylaldehyde with amines in solution and on solid phase. Based on the crystal structure of T-BAL2, the thienyl-C (aldehyde) and C–O (aldehyde) bond lengths were applied as measures for the electron-deficiency (electrophilicity) of the aldehyde and compared to similar bond lengths found in previously reported formylated homo- and hetero-aromatic systems, which show significantly higher reactivity towards imine formation. The bond lengths found in the present structure are in accordance with normal C–C single bond and C–O double bond lengths. The high similarity in aldehyde bond lengths in the present system and in the reported systems indicates similar electron distribution in these systems. The lower reactivity of the present system may therefore not be attributed to electronic factors.
机译:用于固相合成的新连接物(手柄)的开发为肽合成提供了新的化学机会。为了从结构的角度了解最近开发的主链酰胺连接基的化学性质,S-((5-甲酰基-3,4-乙二氧基)噻吩-2-基)-3-硫代丙酸(T-BAL2)的晶体结构)进行了研究。具体而言,我们希望解决这种高度取代的噻吩是否在芳环以及芳环和醛羰基之间保留平面性。此外,我们寻求对噻吩醛与胺在溶液和固相上进行还原胺化反应的相对较低反应性的解释。基于T-BAL2的晶体结构,噻吩基-C(醛)和C-O(醛)键长被用作醛的电子缺陷(亲电子性)的量度,并与以前发现的相似键长进行比较报道了甲酰化的均芳基和杂芳基系统,其显示出对亚胺形成的显着更高的反应性。在当前结构中发现的键长与正常的C–C单键和C–O双键长一致。在本系统和所报道的系统中,醛键长度的高度相似性表明这些系统中的电子分布相似。因此,本系统的较低反应性可能不归因于电子因素。

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