Impact of Site-Specific Bioconjugation on the Interfacial Activity of a Protein Biosurfactant

生物结合 聚乙二醇化 化学 聚乙二醇 两亲性 结合 PEG比率 表面改性 单层 组合化学 共轭体系 纳米技术 聚合物 有机化学 材料科学 生物化学 共聚物 数学分析 经济 物理化学 数学 财务
作者
Hossam H. Tayeb,Marina Stienecker,Anton P. J. Middelberg,Frank Sainsbury
出处
期刊:Langmuir [American Chemical Society]
卷期号:35 (42): 13588-13594 被引量:8
标识
DOI:10.1021/acs.langmuir.9b01684
摘要

Biosurfactants are surface active molecules that can be produced by renewable, industrially scalable biologic processes. DAMP4, a designer biosurfactant, enables the modification of interfaces via genetic or chemical fusion to functional moieties. However, bioconjugation of addressable amines introduces heterogeneity that limits the precision of functionalization as well as the resolution of interfacial characterization. Here, we designed DAMP4 variants with cysteine point mutations to allow for site-specific bioconjugation. The DAMP4 variants were shown to retain the structural stability and interfacial activity characteristic of the parent molecule, while permitting efficient and specific conjugation of polyethylene glycol (PEG). PEGylation results in a considerable reduction on the interfacial activity of both single and double mutants. Comparison of conjugates with one or two conjugation sites shows that both the number of conjugates as well as the mass of conjugated material impact the interfacial activity of DAMP4. As a result, the ability of DAMP4 variants with multiple PEG conjugates to impart colloidal stability on peptide-stabilized emulsions is reduced. We suggest that this is due to steric constraints on the structures of amphiphilic helices at the interface. Specific and efficient bioconjugation permits the exploration and investigation of the interfacial properties of designer protein biosurfactants with molecular precision. Our findings should therefore inform the design and modification of biosurfactants for their increasing use in industrial processes and nutritional and pharmaceutical formulations.
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