Babaei Sheli Khadijeh, Ghorbani Masoud, Hekmat Azadeh, Soltanian Bita, Mohammadian Alireza, Jalalirad Reza
Department of Biology, Faculty of Science, Sciences and Research Branch, Islamic Azad University, Hesarak, 1477893855 Tehran, Iran.
Production and Research Complex, Pasteur Institute of Iran, Tehran-Karaj Highway, 31599, Karaj, Iran.
Biotechnol Rep (Amst). 2018 May 26;19:e00259. doi: 10.1016/j.btre.2018.e00259. eCollection 2018 Sep.
Circular dichroism (CD) in far-UV region was employed to study the extent of changes occurred in the secondary structures of recombinant streptokinase (rSK), solubilized from inclusion bodies (IBs) by different chemicals and refolded/purified by chromatographic techniques. The secondary structure distribution of rSK, obtained following different chemical solubilization systems, was varied and values in the range of 12.4-14.5% α-helices, 40-51% β-sheets and 35.5-48.3% turns plus residual structures were found. With reducing the concentration of chemicals during IB solubilization, the content of turns plus random coils was diminished and simultaneously the amounts of α- and β-sheets were increased. These changes in the secondary structures would lower the hydrophobicity along with the chance of protein aggregation and expose the hydrophilic regions of the protein. Therefore, these alterations in the secondary structures, occurred following efficient IBs solubilization by low concentration of chemicals, could be related to enhancement in rSK biological potency previously observed.
利用远紫外区域的圆二色性(CD)研究了重组链激酶(rSK)二级结构的变化程度。rSK从包涵体(IBs)中通过不同化学物质溶解,并通过色谱技术进行重折叠/纯化。在不同化学溶解系统后获得的rSK二级结构分布各不相同,发现α-螺旋含量在12.4 - 14.5%范围内,β-折叠在40 - 51%范围内,转角加残余结构在35.5 - 48.3%范围内。在IBs溶解过程中降低化学物质的浓度,转角加无规卷曲的含量减少,同时α-螺旋和β-折叠的量增加。二级结构的这些变化会降低疏水性以及蛋白质聚集的可能性,并暴露蛋白质的亲水区。因此,在通过低浓度化学物质有效溶解IBs后二级结构的这些改变,可能与之前观察到的rSK生物学活性增强有关。