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肽缩氨酸在多学科研究和本科教育中齐头并进:序列对构象和脂质相互作用的影响。

Peptoids advance multidisciplinary research and undergraduate education in parallel: Sequence effects on conformation and lipid interactions.

机构信息

Department of Chemistry & Biochemistry, Santa Clara University, Santa Clara, California, U.S.A.

出版信息

Biopolymers. 2019 Apr;110(4):e23256. doi: 10.1002/bip.23256. Epub 2019 Jan 11.

Abstract

Peptoids are versatile peptidomimetic molecules with wide-ranging applications from drug discovery to materials science. An understanding of peptoid sequence features that contribute to both their three-dimensional structures and their interactions with lipids will expand functions of peptoids in varied fields. Furthermore, these topics capture the enthusiasm of undergraduate students who prepare and study diverse peptoids in laboratory coursework and/or in faculty led research. Here, we present the synthesis and study of 21 peptoids with varied functionality, including 19 tripeptoids and 2 longer oligomers. We observed differences in fluorescence spectral features for 10 of the tripeptoids that correlated with peptoid flexibility and relative positioning of chromophores. Interactions of representative peptoids with sonicated glycerophospholipid vesicles were also evaluated using fluorescence spectroscopy. We observed evidence of conformational changes effected by lipids for select peptoids. We also summarize our experiences engaging students in peptoid-based projects to advance both research and undergraduate educational objectives in parallel.

摘要

肽缩氨酸是多功能的拟肽分子,在药物发现到材料科学等领域都有广泛的应用。了解肽缩氨酸序列特征,这些特征有助于它们的三维结构及其与脂质的相互作用,将扩展肽缩氨酸在不同领域的功能。此外,这些主题吸引了准备并在实验室课程和/或教师主导的研究中研究各种肽缩氨酸的本科生的兴趣。在这里,我们展示了 21 种具有不同功能的肽缩氨酸的合成和研究,包括 19 种三肽缩氨酸和 2 种更长的低聚物。我们观察到 10 种三肽缩氨酸的荧光光谱特征存在差异,这些差异与肽缩氨酸的灵活性和发色团的相对位置有关。还使用荧光光谱法评估了代表性肽缩氨酸与超声处理的甘油磷脂囊泡的相互作用。我们观察到脂质对某些肽缩氨酸产生构象变化的证据。我们还总结了我们让学生参与肽缩氨酸项目的经验,以平行推进研究和本科教育目标。

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