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大环金属配合物的结合对胰岛素和溶菌酶淀粉样纤维化的影响。

The impact of binding of macrocyclic metal complexes on amyloid fibrillization of insulin and lysozyme.

作者信息

Kovalska Vladyslava, Chernii Svitlana, Cherepanov Vsevolod, Losytskyy Mykhaylo, Chernii Victor, Varzatskii Oleg, Naumovets Anton, Yarmoluk Sergiy

机构信息

Institute of Molecular Biology and Genetics, National Academy of Sciences of Ukraine, Kyiv, Ukraine.

Institute of Physics, National Academy of Sciences of Ukraine, Kyiv, Ukraine.

出版信息

J Mol Recognit. 2017 Aug;30(8). doi: 10.1002/jmr.2622. Epub 2017 Mar 14.

Abstract

Amyloid fibrils are insoluble protein aggregates whose accumulation in cells and tissues is connected with a range of pathological diseases. We studied the impact of 2 metal complexes (axially coordinated Hf phthalocyanine and iron (II) clathrochelate) on aggregation of insulin and lysozyme. For both proteins, the host-guest interaction with these compounds changes the kinetics of fibrillization and affects the morphology of final aggregates. The Hf phthalocyanine is a very efficient inhibitor of insulin fibrillization; in its presence, only very low amounts of fibrils with the diameters of 0.8 to 5 nm and spherical aggregates were found. Effective concentration of fibrillization inhibition (IC ) was estimated to be 0.11 ± 0.04 μM. The clathrochelate induced the formation of thin fibrils with the diameters of 0.8 to 2.5 nm; IC was estimated as 20 ± 9 μM. The lysozyme fibrillization remained quite intensive in the presence of the studied compounds; they induced the formation of long filaments (the length up to 2.5 μm, the diameters of 1.5-3.5 nm). These fibrils noticeably differed from those of free lysozyme short linear species (the diameters of 3-5 nm, the length up to 0.6 μm). Thinning and elongation of fibrils suggest that the metal complexes bind mainly to the grooves of protofilaments; this hinders the stacking of early aggregates or protofilaments together but does not hinder their growth. The image of the fibril separated into 2 protofilaments allows suggesting that the fibril formation occurs via the growth of the parallel protofilaments with their subsequent twisting in the fibril. The changes of the lysozyme intrinsic fluorescence indicate that both metal complexes interact with the protein during the stage of the fibrillar seeds formation.

摘要

淀粉样纤维是不溶性蛋白质聚集体,其在细胞和组织中的积累与一系列病理疾病相关。我们研究了2种金属配合物(轴向配位的铪酞菁和铁(II)笼形配合物)对胰岛素和溶菌酶聚集的影响。对于这两种蛋白质,与这些化合物的主客体相互作用改变了纤维化动力学并影响最终聚集体的形态。铪酞菁是胰岛素纤维化的非常有效的抑制剂;在其存在下,仅发现极少量直径为0.8至5纳米的纤维和球形聚集体。纤维化抑制的有效浓度(IC)估计为0.11±0.04微摩尔。笼形配合物诱导形成直径为0.8至2.5纳米的细纤维;IC估计为20±9微摩尔。在所研究的化合物存在下,溶菌酶纤维化仍然相当强烈;它们诱导形成长丝(长度可达2.5微米,直径为1.5 - 3.5纳米)。这些纤维与游离溶菌酶的短线性物种(直径为3 - 5纳米,长度可达0.6微米)明显不同。纤维的变细和伸长表明金属配合物主要结合到原纤维的凹槽上;这阻碍了早期聚集体或原纤维的堆叠在一起,但不阻碍它们的生长。分离成两条原纤维的纤维图像表明,纤维形成是通过平行原纤维的生长以及随后在纤维中的扭曲而发生的。溶菌酶固有荧光的变化表明,两种金属配合物在纤维状种子形成阶段与蛋白质相互作用。

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