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纳米颗粒-蛋白质缀合物的结构与功能。

Structure and function of nanoparticle-protein conjugates.

作者信息

Aubin-Tam M-E, Hamad-Schifferli K

机构信息

Department of Biological Engineering, Massachusetts Institute of Technology, 77 Massachusetts Ave, Cambridge, MA 02139, USA.

出版信息

Biomed Mater. 2008 Sep;3(3):034001. doi: 10.1088/1748-6041/3/3/034001. Epub 2008 Aug 8.

Abstract

Conjugation of proteins to nanoparticles has numerous applications in sensing, imaging, delivery, catalysis, therapy and control of protein structure and activity. Therefore, characterizing the nanoparticle-protein interface is of great importance. A variety of covalent and non-covalent linking chemistries have been reported for nanoparticle attachment. Site-specific labeling is desirable in order to control the protein orientation on the nanoparticle, which is crucial in many applications such as fluorescence resonance energy transfer. We evaluate methods for successful site-specific attachment. Typically, a specific protein residue is linked directly to the nanoparticle core or to the ligand. As conjugation often affects the protein structure and function, techniques to probe structure and activity are assessed. We also examine how molecular dynamics simulations of conjugates would complete those experimental techniques in order to provide atomistic details on the effect of nanoparticle attachment. Characterization studies of nanoparticle-protein complexes show that the structure and function are influenced by the chemistry of the nanoparticle ligand, the nanoparticle size, the nanoparticle material, the stoichiometry of the conjugates, the labeling site on the protein and the nature of the linkage (covalent versus non-covalent).

摘要

蛋白质与纳米颗粒的缀合在传感、成像、递送、催化、治疗以及蛋白质结构和活性的控制等方面有众多应用。因此,表征纳米颗粒 - 蛋白质界面非常重要。已经报道了多种用于纳米颗粒附着的共价和非共价连接化学方法。为了控制蛋白质在纳米颗粒上的取向,位点特异性标记是可取的,这在许多应用中至关重要,例如荧光共振能量转移。我们评估成功进行位点特异性附着的方法。通常,特定的蛋白质残基直接与纳米颗粒核心或配体相连。由于缀合常常会影响蛋白质的结构和功能,因此对探测结构和活性的技术进行了评估。我们还研究了缀合物的分子动力学模拟如何补充这些实验技术,以便提供关于纳米颗粒附着效果的原子细节。纳米颗粒 - 蛋白质复合物的表征研究表明,其结构和功能受到纳米颗粒配体的化学性质、纳米颗粒大小、纳米颗粒材料、缀合物的化学计量、蛋白质上的标记位点以及连接性质(共价与非共价)的影响。

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