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蛋白质纳米颗粒静电相互作用:大小依赖的抗衡离子诱导鸡卵清溶菌酶构象变化。

Protein nanoparticle electrostatic interaction: size dependent counterions induced conformational change of hen egg white lysozyme.

机构信息

UGC-DAE Consortium for Scientific Research, Trombay, Mumbai 400085, India.

Solid State Physics Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India.

出版信息

Colloids Surf B Biointerfaces. 2014 Jun 1;118:1-6. doi: 10.1016/j.colsurfb.2014.03.026. Epub 2014 Mar 24.

Abstract

In our earlier paper (Ghosh et al., 2013), we have shown that (i) the positively charged hen egg white lysozyme (HEWL), dispersed in water, binds electrostatically with the negatively functionalized iron oxide nanoparticles (IONPs), and (ii) the Na(+) counterions, associated with functionalized IONPs, diffuse into bound proteins and irreversibly unfold them. Having this information, we have extended our investigation and report here the effect of the size and the charge of alkaline metal counterions on the conformational modification of HEWL. In order to obtain a negative functional 'shell' on IONPs and the counterions of different size and charge we have functionalized IONPs with different derivatives of citrate, namely, tri-lithium citrate (TLC, Li3C6H5O7), tri-sodium citrate (TSC, Na3C6H5O7), tri-potassium citrate (TKC, K3C6H5O7) and tri-magnesium citrate (TMC, Mg3C12H10O14). The size of counterions varies as Mg(2+)<Li(+)<Na(+)<K(+). After interaction with the functionalized IONPs, the unfolding of HEWL was the maximum in presence of Li(+), and was decreasing with increasing size of counterions. The UV-vis absorption measurements indicated that the unfolding of HEWL was due to modification in the hydrophobic environment around the tryptophan regions. The unfolding of HEWL was associated with the change of folding conformation from the α-helix to the β-sheet. In absence of counterions, ligand-IONPs have no effect on the native conformation of HEWL. An effective use of counterions in order to modify protein conformation (and, the functionality) via protein-nanoparticle electrostatic interaction is a new finding, and be useful for an alternative medical therapy.

摘要

在我们之前的论文中(Ghosh 等人,2013),我们已经表明:(i)带正电荷的鸡卵清白溶菌酶(HEWL)在水中分散时,与带负电荷的功能化氧化铁纳米粒子(IONP)静电结合;(ii)与功能化 IONP 结合的 Na+反离子扩散到结合的蛋白质中,并不可逆地使其展开。有了这些信息,我们扩展了我们的研究,并在此报告了碱性金属反离子的大小和电荷对 HEWL 构象修饰的影响。为了在 IONP 上获得负功能“壳”和不同大小和电荷的反离子,我们用不同的柠檬酸盐衍生物对 IONP 进行了功能化,即三锂柠檬酸盐(TLC,Li3C6H5O7)、三钠柠檬酸盐(TSC,Na3C6H5O7)、三钾柠檬酸盐(TKC,K3C6H5O7)和三镁柠檬酸盐(TMC,Mg3C12H10O14)。反离子的大小变化为 Mg2+<Li+<Na+<K+。与功能化 IONP 相互作用后,HEWL 的展开在存在 Li+时最大,并且随着反离子尺寸的增加而减小。紫外-可见吸收测量表明,HEWL 的展开是由于色氨酸区域周围疏水环境的修饰。HEWL 的展开与从α-螺旋到β-折叠的折叠构象变化有关。在没有反离子的情况下,配体-IONP 对 HEWL 的天然构象没有影响。通过蛋白质-纳米颗粒静电相互作用有效利用反离子来修饰蛋白质构象(和功能)是一个新发现,可能对替代医学治疗有用。

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