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铜配体簇决定了在固体支持物上进行炔烃-叠氮环加成反应期间形成的环化肽的大小。

Copper-ligand clusters dictate size of cyclized peptide formed during alkyne-azide cycloaddition on solid support.

作者信息

Kandler Rene, Das Samir, Nag Arundhati

机构信息

Carlson School of Chemistry and Biochemistry, Clark University, Worcester, MA 01610, USA.

出版信息

RSC Adv. 2021;11(8):4842-4852. doi: 10.1039/D0RA07491H. Epub 2021 Jan 27.

Abstract

Peptide and peptidomimetic cyclization by copper-catalyzed alkyne-azide cycloaddition (CuAAC) reaction have been used to mimic disulfide bonds, alpha helices, amide bonds, and for one-bead-one-compound (OBOC) library development. A limited number of solid-supported CuAAC cyclization methods resulting in monomeric cyclic peptide formation have been reported for specific peptide sequences, but there exists no general study on monocyclic peptide formation using CuAAC cyclization. Since several cyclic peptides identified from an OBOC CuAAC cyclized library has been shown to have important biological applications, we discuss here an efficient method of alkyne-azide 'click' catalyzed monomeric cyclic peptide formation on a solid support. The reason behind the efficiency of the method is explored. CuAAC cyclization of a peptide sequence with azidolysine and propargylglycine is performed under various reaction conditions, with different catalysts, in the presence or absence of an organic base. The results indicate that piperidine plays a critical role in the reaction yield and monomeric cycle formation by coordinating to Cu and forming Cu-ligand clusters. A previously synthesized copper compound containing piperidine, [CuI(pip)], is found to catalyze the CuAAC cyclization of monomeric peptide effectively. The use of 1.5 equivalents of CuI and the use of DMF as solvent is found to give optimal CuAAC cyclized monomer yields. The effect of the peptide sequence and peptide length on monomer formation are also investigated by varying either parameter systemically. Peptide length is identified as the determining factor for whether the monomeric or dimeric cyclic peptide is the major product. For peptides with six, seven, or eight amino acids, the monomer is the major product from CuAAC cyclization. Longer and shorter peptides on cyclization show less monomer formation. CuAAC peptide cyclization of non-optimal peptide lengths such as pentamers is affected significantly by the amino acid sequence and give lower yields.

摘要

通过铜催化的炔烃-叠氮化物环加成(CuAAC)反应进行的肽和拟肽环化已被用于模拟二硫键、α螺旋、酰胺键,以及用于单珠单化合物(OBOC)文库的开发。针对特定的肽序列,已报道了有限数量的导致单体环肽形成的固相支持的CuAAC环化方法,但尚未有关于使用CuAAC环化形成单环肽的一般性研究。由于从OBOC CuAAC环化文库中鉴定出的几种环肽已显示出重要的生物学应用,我们在此讨论一种在固相支持物上通过炔烃-叠氮化物“点击”催化形成单体环肽的有效方法。探讨了该方法高效的原因。在各种反应条件下,使用不同的催化剂,在有或没有有机碱存在的情况下,对含有叠氮赖氨酸和炔丙基甘氨酸的肽序列进行CuAAC环化。结果表明,哌啶通过与铜配位并形成铜-配体簇,在反应产率和单体环形成中起着关键作用。发现一种先前合成的含哌啶的铜化合物[CuI(pip)]能有效地催化单体肽的CuAAC环化。发现使用1.5当量的CuI和使用DMF作为溶剂可得到最佳的CuAAC环化单体产率。还通过系统地改变任一参数来研究肽序列和肽长度对单体形成的影响。肽长度被确定为单体或二聚体环肽是否为主要产物的决定因素。对于含有六个、七个或八个氨基酸的肽,单体是CuAAC环化的主要产物。环化时较长和较短的肽显示出较少的单体形成。非最佳肽长度(如五聚体)的CuAAC肽环化受氨基酸序列的影响很大,产率较低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8806/8694536/8ebaf34cf715/d0ra07491h-f1.jpg

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