FitzSimons Thomas M, Duti Israt Jahan, Conrad Nathaniel, Agrawal Paridhi, Niemoeller Alexandria, Guinn Emily, Wang Jingyao, Vasiukhina-Martin Anastasiia, Rosales Adrianne M
McKetta Department of Chemical Engineering, The University of Texas at Austin, Austin, USA.
Eli Lilly and Company, Indianapolis, USA.
Soft Matter. 2025 May 23. doi: 10.1039/d5sm00275c.
Peptide gelators have been widely explored in aqueous systems due to their prevalence in biological and medical applications. However, gelation behavior of peptides is less understood in organic medium, despite the extensive use of organic solvents in solid phase peptide synthesis, hybrid synthesis protocols, and the formation and application of organogels. Here, peptides with a short aqueous gelator sequence, lysine-tyrosine-phenylalanine or KYF, were investigated for the ability to form gels in dichloromethane (DCM) when their side groups are protected. Protected KYF-containing peptides formed gels in DCM at similar concentrations to deprotected KYF peptides in water. Structural characterization Fourier transform infrared spectroscopy indicated the presence of antiparallel β-sheets in both the protected and the deprotected KYF gels. However, transmission electron microscopy and dynamic light scattering indicated the protected KYF gels in DCM consisted of short, anisotropic particles at the mesoscale, whereas the deprotected KYF gels in water showed entangled fibers. The protected KYF gels in DCM exhibited similar rheological properties to colloidal gels, namely an increasing resistance to flow at higher shear rates, a shear thinning profile, and a gel-to-fluid transition with increasing strain. Altogether, this study provides critical insights on the assembly behavior and structure of a tripeptide motif and its variants in organic medium, which can facilitate optimizing the processing conditions of similar peptides in organic solvents during synthesis or end-use applications.
由于肽类凝胶剂在生物和医学应用中的广泛存在,它们在水性体系中已得到广泛研究。然而,尽管有机溶剂在固相肽合成、混合合成方案以及有机凝胶的形成和应用中被广泛使用,但肽在有机介质中的凝胶化行为却鲜为人知。在此,研究了具有短水性凝胶剂序列(赖氨酸 - 酪氨酸 - 苯丙氨酸或KYF)的肽在其侧链基团被保护时在二氯甲烷(DCM)中形成凝胶的能力。含受保护KYF的肽在DCM中形成凝胶的浓度与在水中的去保护KYF肽相似。结构表征——傅里叶变换红外光谱表明,受保护和去保护的KYF凝胶中均存在反平行β-折叠。然而,透射电子显微镜和动态光散射表明,DCM中的受保护KYF凝胶由中尺度的短各向异性颗粒组成,而水中的去保护KYF凝胶则显示出缠结的纤维。DCM中的受保护KYF凝胶表现出与胶体凝胶相似的流变学性质,即在较高剪切速率下流动阻力增加、剪切变稀曲线以及随着应变增加从凝胶到流体的转变。总之,本研究为三肽基序及其变体在有机介质中的组装行为和结构提供了关键见解,这有助于优化类似肽在合成或最终应用过程中在有机溶剂中的加工条件。