化学
肽
胆囊收缩素
圆二色性
内化
折叠(DSP实现)
受体
组合化学
核磁共振波谱
质谱法
生物物理学
胆囊收缩素受体
生物化学
立体化学
色谱法
电气工程
工程类
生物
作者
Alicia Corlett,Marc‐Antoine Sani,Jessica Van Zuylekom,Ching‐Seng Ang,Elisabeth von Guggenberg,Carleen Cullinane,Benjamin J. Blyth,Rodney J. Hicks,Peter Roselt,Philip E. Thompson,Craig A. Hutton,Mohammad B. Haskali
标识
DOI:10.1021/acs.jmedchem.0c02213
摘要
Proteins adopt unique folded secondary and tertiary structures that are responsible for their remarkable biological properties. This structural complexity is key in designing efficacious peptides that can mimic the three-dimensional structure needed for biological function. In this study, we employ different chemical strategies to induce and stabilize a β-hairpin fold of peptides targeting cholecystokinin-2 receptors for theranostic application (combination of a targeted therapeutic and a diagnostic companion). The newly developed peptides exhibited enhanced folding capacity as demonstrated by circular dichroism (CD) spectroscopy, ion-mobility spectrometry-mass spectrometry, and two-dimensional (2D) NMR experiments. Enhanced folding characteristics of the peptides led to increased biological potency, affording four optimal Ga-68 labeled radiotracers ([68Ga]Ga-4b, [68Ga]Ga-11b-13b) targeting CCK-2R. In particular, [68Ga]Ga-12b and [68Ga]Ga-13b presented improved metabolic stability, enhanced cell internalization, and up to 6 fold increase in tumor uptake. These peptides hold great promise as next-generation theranostic radiopharmaceuticals.
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