Citrate stabilized gold nanoparticles interfere with amyloid fibril formation: D76N and ΔN6 β2-microglobulin variants

被引:27
作者
Brancolini, Giorgia [1 ]
Maschio, Maria Celeste [1 ]
Cantarutti, Cristina [2 ]
Corazza, Alessandra [2 ,3 ]
Fogolari, Federico [2 ,3 ]
Bellotti, Vittorio [3 ,4 ,5 ]
Corni, Stefano [1 ,6 ]
Esposito, Gennaro [1 ,3 ,7 ]
机构
[1] CNR, Inst Nanosci, Ctr S3, Via Campi 213-A, I-41125 Modena, Italy
[2] Univ Udine, DSMB, Piazzale Kolbe 3, I-33100 Udine, Italy
[3] Ist Nazl Biostrutture & Biosistemi, Viale Medaglie Oro 305, I-00136 Rome, Italy
[4] Univ Pavia, Dipartimento Med Mol, Via Taramelli 3, I-27100 Pavia, Italy
[5] UCL, Div Med, London NW3 2PF, England
[6] Univ Padua, Dept Chem Sci, Via VIII Febbraio 2, I-35122 Padua, Italy
[7] New York Univ Abu Dhabi, Sci & Math Div, Abu Dhabi, U Arab Emirates
关键词
FORCE-FIELD; N-15; NMR; BETA(2)-MICROGLOBULIN; AU(111); AGGREGATION; SUPPRESSION; SIMULATION; EXCITATION; SURFACES; NANO;
D O I
10.1039/c7nr06808e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Protein aggregation including the formation of dimers and multimers in solution, underlies an array of human diseases such as systemic amyloidosis which is a fatal disease caused by misfolding of native globular proteins damaging the structure and function of affected organs. Different kind of interactors can interfere with the formation of protein dimers and multimers in solution. A very special class of interactors are nanoparticles thanks to the extremely efficient extension of their interaction surface. In particular citrate-coated gold nanoparticles (cit-AuNPs) were recently investigated with amyloidogenic protein beta 2-microglobulin (beta(2)m). Here we present the computational studies on two challenging models known for their enhanced amyloidogenic propensity, namely Delta N6 and D76N beta(2)m naturally occurring variants, and disclose the role of cit-AuNPs on their fibrillogenesis. The proposed interaction mechanism lies in the interference of the cit-AuNPs with the protein dimers at the early stages of aggregation, that induces dimer disassembling. As a consequence, natural fibril formation can be inhibited. Relying on the comparison between atomistic simulations at multiple levels (enhanced sampling molecular dynamics and Brownian dynamics) and protein structural characterisation by NMR, we demonstrate that the cit-AuNPs interactors are able to inhibit protein dimer assembling. As a consequence, the natural fibril formation is also inhibited, as found in experiment.
引用
收藏
页码:4793 / 4806
页数:14
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