Institute for Integrated Radiation and Nuclear Science, Kyoto University, Kumatori, Sennan-gun, Osaka, 590-0494, Japan.
Australian Nuclear Science and Technology Organization, Lucas Heights, NSW, Australia.
Sci Rep. 2021 Jan 28;11(1):2555. doi: 10.1038/s41598-021-82250-z.
AlphaB crystallin (αB-crystallin) is a key protein for maintaining the long-term transparency of the eye lens. In the eye lens, αB-crystallin is a "dynamical" oligomer regulated by subunit exchange between the oligomers. To elucidate the unsettled mechanism of subunit exchange in αB-crystallin oligomers, the study was carried out at two different protein concentrations, 28.5 mg/mL (dense sample) and 0.45 mg/mL (dilute sample), through inverse contrast matching small-angle neutron scattering. Interestingly, the exchange rate of the dense sample was the same as that of the dilute sample. From analytical ultracentrifuge measurements, the coexistence of small molecular weight components and oligomers was detected, regardless of the protein concentration. The model proposed that subunit exchange could proceed through the assistance of monomers and other small oligomers; the key mechanism is attaching/detaching monomers and other small oligomers to/from oligomers. Moreover, this model successfully reproduced the experimental results for both dense and dilute solutions. It is concluded that the monomer and other small oligomers attaching/detaching mainly regulates the subunit exchange in αB-crystallin oligomer.
阿尔法 B 晶状体蛋白(αB-crystallin)是维持眼睛晶状体长期透明的关键蛋白。在眼睛晶状体中,αB-crystallin 是一种通过寡聚体之间的亚基交换进行“动态”调节的寡聚体。为了阐明 αB-crystallin 寡聚体中亚基交换的未解决机制,该研究在两种不同的蛋白质浓度(28.5mg/mL(密集样品)和 0.45mg/mL(稀释样品)下,通过逆对比匹配小角中子散射进行。有趣的是,密集样品的交换速率与稀释样品相同。从分析超速离心测量中,无论蛋白质浓度如何,都检测到小分子质量成分和寡聚体共存。提出的模型表明,亚基交换可以通过单体和其他小寡聚体的辅助进行;关键机制是将单体和其他小寡聚体附着/脱离寡聚体。此外,该模型成功地再现了密集和稀释溶液的实验结果。结论是单体和其他小寡聚体的附着/脱离主要调节 αB-crystallin 寡聚体中亚基的交换。