淀粉样蛋白与生物仿真细胞膜模型的结合--内在紊乱的连续体。

IF 2.2 4区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE
Garry W. Buchko , Natalie C. Kegulian , Janet Moradian-Oldak
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引用次数: 0

摘要

目的:与小鼠淀粉样蛋白(Ambn)外显子 5 所编码的片段 AB2(Y67-Q103)相对应的 37 个残基氨基酸序列与膜关联、淀粉样蛋白自组装和淀粉样蛋白结合有关。我们的目的是利用核磁共振光谱在残基水平上描述 AB2 与生物膜化学模拟物结合的结构行为:设计:为了利用基于核磁共振的方法更好地确定 AB2 的结构,我们制备了 13C 和 15N 标记的重组 AB2(*AB2),并收集了溶液中的自由数据以及与氚代十二烷基磷酸胆碱(dPC)胶束、氚代双胶束以及小型和大型单胶束囊泡结合的数据:在双胶囊和dPC胶束存在时,*AB2的1H-15N HSQC光谱中观察到的酰胺化学位移和强度扰动表明,*AB2的一个区域S6-E36(鼠Ambn S68-E98)与膜生物仿生学有关。对 *AB2 在溶液中的自由状态和与 dPC 胶束结合后的核磁共振化学位移分配进行的 CSI-3 分析表明,除了采用一个短的 12 位元 α-螺旋 F10-G21(小鼠 Ambn F72-G83)外,肽仍然是无序的。在 dPC 胶束中,NOE NMR 数据中没有长寿命螺旋结构的特征模式,这表明这种螺旋在本质上是短暂的:结论:在amelogenesis过程中,ameloblastin能够在同一部位与多个伙伴动态地相互作用,这可能是膜结合状态下内在无序性的连续性所致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ameloblastin binding to biomimetic models of cell membranes – A continuum of intrinsic disorder

Objective

A 37-residue amino acid sequence corresponding to the segment encoded by exon-5 of murine ameloblastin (Ambn), AB2 (Y67-Q103), has been implicated with membrane association, ameloblastin self-assembly, and amelogenin-binding. Our aim was to characterize, at the residue level, the structural behavior of AB2 bound to chemical mimics of biological membranes using NMR spectroscopy.

Design

To better define the structure of AB2 using NMR-based methods, recombinant 13C- and 15N-labelled AB2 (*AB2) was prepared and data collected free in solution and with deuterated dodecylphosphocholine (dPC) micelles, deuterated bicelles, and both small and large unilamellar vesicles.

Results

Amide chemical shift and intensity perturbations observed in 1H-15N HSQC spectra of *AB2 in the presence of bicelles and dPC micelles suggest that a region of *AB2, S6-E36 (murine Ambn S68 – E98), associates with the membrane biomimetics. A CSI-3 analysis of the NMR chemical shift assignments for *AB2 free in solution and bound to dPC micelles indicated the peptide remains disordered except for the adoption of a short, 12-residue α-helix, F10-G21 (murine Ambn F72-G83). In dPC micelles, the NOE NMR data was void of patterns characteristic of long-lived helical structure indicating this helix was transient in nature.

Conclusions

A continuum of intrinsic disorder in the membrane-bound state may be responsible for ameloblastin’s ability to dynamically interact with multiple partners at the same site during amelogenesis.
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来源期刊
Archives of oral biology
Archives of oral biology 医学-牙科与口腔外科
CiteScore
5.10
自引率
3.30%
发文量
177
审稿时长
26 days
期刊介绍: Archives of Oral Biology is an international journal which aims to publish papers of the highest scientific quality in the oral and craniofacial sciences. The journal is particularly interested in research which advances knowledge in the mechanisms of craniofacial development and disease, including: Cell and molecular biology Molecular genetics Immunology Pathogenesis Cellular microbiology Embryology Syndromology Forensic dentistry
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