Literature DB >> 18689927

Structure and function of nanoparticle-protein conjugates.

M-E Aubin-Tam1, K Hamad-Schifferli.   

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).

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Year:  2008        PMID: 18689927     DOI: 10.1088/1748-6041/3/3/034001

Source DB:  PubMed          Journal:  Biomed Mater        ISSN: 1748-6041            Impact factor:   3.715


  36 in total

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2.  Sensing with photoluminescent semiconductor quantum dots.

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3.  Synthesis of Gold Nanoparticles Coated with Aspartic Acid and Their Conjugation with FVIII Protein and FVIII Antibody.

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Review 4.  Nanoscale interfaces to biology.

Authors:  Sunho Park; Kimberly Hamad-Schifferli
Journal:  Curr Opin Chem Biol       Date:  2010-07-30       Impact factor: 8.822

5.  ELISA-mimic screen for synthetic polymer nanoparticles with high affinity to target proteins.

Authors:  Yusuke Yonamine; Yu Hoshino; Kenneth J Shea
Journal:  Biomacromolecules       Date:  2012-08-14       Impact factor: 6.988

6.  Determination of Rigidity of Protein Bound Au(144) Clusters by Electron Cryomicroscopy.

Authors:  Jonathan Z Sexton; Christopher J Ackerson
Journal:  J Phys Chem C Nanomater Interfaces       Date:  2010-09-30       Impact factor: 4.126

7.  Proteins, platelets, and blood coagulation at biomaterial interfaces.

Authors:  Li-Chong Xu; James W Bauer; Christopher A Siedlecki
Journal:  Colloids Surf B Biointerfaces       Date:  2014-09-28       Impact factor: 5.268

8.  Site-specific biomolecule labeling with gold clusters.

Authors:  Christopher J Ackerson; Richard D Powell; James F Hainfeld
Journal:  Methods Enzymol       Date:  2010       Impact factor: 1.600

9.  Utilizing clathrin triskelions as carriers for spatially controlled multi-protein display.

Authors:  Michael B Deci; Scott W Ferguson; Maixian Liu; Damian C Peterson; Sujatha P Koduvayur; Juliane Nguyen
Journal:  Biomaterials       Date:  2016-08-28       Impact factor: 12.479

Review 10.  Overview of the main methods used to combine proteins with nanosystems: absorption, bioconjugation, and encapsulation.

Authors:  Mariagrazia Di Marco; Shaharum Shamsuddin; Khairunisak Abdul Razak; Azlan Abdul Aziz; Corinne Devaux; Elsa Borghi; Laurent Levy; Claudia Sadun
Journal:  Int J Nanomedicine       Date:  2010-02-02
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