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合成 Silaffin-1A(Sil-1A)的硅矿物质化特性。

The silica mineralisation properties of synthetic Silaffin-1A (Sil-1A).

机构信息

Department of Chemistry, Philipps-Universität Marburg, Hans-Meerwein-Straße 4, 35032 Marburg, Germany.

出版信息

Org Biomol Chem. 2022 Apr 20;20(16):3387-3396. doi: 10.1039/d2ob00390b.

Abstract

The synthetic monodisperse pentadecapeptide is a representative of the microdisperse mixture of the native silaffin Sil-1A produced by the diatom . The octaphosphorylated zwitterionic is able to mineralise silica under slightly acidic conditions at pH 5.5, which is the physiologically relevant pH range assumed. Like the posttranslational modifications of the native silaffins, is functionalised on all four lysine and phosphorylated on all seven serine residues. We describe the synthesis of a trimethyl-δ-hydroxy-L-lysine building block, the incorporation of this choline-type amino acid in peptide synthesis and its phosphorylation, together with all further posttranslational modifications observed in the native silaffins. Quantitative structure-activity relationships from silicification experiments at high dilution reveal the unique mineralisation properties of the hyperphosphorylated peptide as a single substance and in interaction with long-chain polyamines (LCPA). Diffusion-ordered spectroscopy (DOSY) experiments reveal the formation of polyelectrolyte complexes (PEC) between and long-chain polyamines, which promotes the silicification process. The microdroplets have an overall balanced ratio of 100-150 cationic and the same number of anionic charges. The unique zwitterionic confirms the prevailing molecular model of biosilicification and validates it with quantitative data based on a single phosphopeptide species, avoiding the usual unphysiologically high concentrations of phosphate of many previous silicification experiments.

摘要

合成的单分散十五肽是由硅藻产生的天然丝氨酸 Sil-1A 的微分散混合物的代表。八磷酸化两性离子在 pH5.5(假定的生理相关 pH 范围)的略酸性条件下能够使二氧化硅矿化,这与天然丝氨酸的翻译后修饰一样,在所有四个赖氨酸上进行功能化,并在所有七个丝氨酸残基上磷酸化。我们描述了一种三甲基-δ-羟基-L-赖氨酸砌块的合成,该砌块在肽合成中的掺入及其磷酸化,以及在天然丝氨酸中观察到的所有进一步翻译后修饰。高稀释条件下硅化实验的定量构效关系揭示了超磷酸化肽作为单一物质及其与长链多胺(LCPA)相互作用的独特矿化特性。扩散有序光谱(DOSY)实验揭示了和长链多胺之间形成聚电解质复合物(PEC),这促进了硅化过程。微滴具有阳离子和阴离子电荷数均为 100-150 的总体平衡比例。独特的两性离子证实了生物硅化的主流分子模型,并通过基于单个磷酸肽的定量数据对其进行了验证,避免了许多以前的硅化实验中通常存在的不生理的高磷酸盐浓度。

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