Department of Biotechnology, College of Life Science and Biotechnology, Yonsei University, Seoul, South Korea.
Department of Biochemistry and Biophysics, Stockholm University, Stockholm, Sweden.
FASEB J. 2018 May;32(5):2658-2675. doi: 10.1096/fj.201700747RR. Epub 2018 Jan 2.
A novel protein-folding function of RNA has been recognized, which can outperform previously known molecular chaperone proteins. The RNA as a molecular chaperone (chaperna) activity is intrinsic to some ribozymes and is operational during viral infections. Our purpose was to test whether influenza hemagglutinin (HA) can be assembled in a soluble, trimeric, and immunologically activating conformation by means of an RNA molecular chaperone (chaperna) activity. An RNA-interacting domain (RID) from the host being immunized was selected as a docking tag for RNA binding, which served as a transducer for the chaperna function for de novo folding and trimeric assembly of RID-HA1. Mutations that affect tRNA binding greatly increased the soluble aggregation defective in trimer assembly, suggesting that RNA interaction critically controls the kinetic network in the folding/assembly pathway. Immunization of mice resulted in strong hemagglutination inhibition and high titers of a neutralizing antibody, providing sterile protection against a lethal challenge and confirming the immunologically relevant HA conformation. The results may be translated into a rapid response to a new influenza pandemic. The harnessing of the novel chaperna described herein with immunologically tailored antigen-folding functions should serve as a robust prophylactic and diagnostic tool for viral infections.-Yang, S. W., Jang, Y. H., Kwon, S. B., Lee, Y. J., Chae, W., Byun, Y. H., Kim, P., Park, C., Lee, Y. J., Kim, C. K., Kim, Y. S., Choi, S. I., Seong, B. L. Harnessing an RNA-mediated chaperone for the assembly of influenza hemagglutinin in an immunologically relevant conformation.
一种新的 RNA 折叠功能已被识别,它可以胜过以前已知的分子伴侣蛋白。RNA 作为一种分子伴侣(chaperna)活性存在于某些核酶中,并在病毒感染过程中发挥作用。我们的目的是测试流感血凝素(HA)是否可以通过 RNA 分子伴侣(chaperna)活性组装成可溶性、三聚体和免疫激活构象。从被免疫的宿主中选择一个 RNA 相互作用结构域(RID)作为 RNA 结合的对接标签,该 RID 充当 chaperna 功能的传感器,用于从头折叠和 RID-HA1 的三聚体组装。影响 tRNA 结合的突变极大地增加了可溶性聚集缺陷的三聚体组装,这表明 RNA 相互作用对折叠/组装途径中的动力学网络具有关键控制作用。用该 RNA 免疫小鼠可导致强烈的血凝抑制和中和抗体的高滴度,对致死性攻击提供无菌保护,并证实了具有免疫相关性的 HA 构象。这些结果可能会转化为对新流感大流行的快速反应。利用本文所描述的新型 chaperna 与免疫定制的抗原折叠功能相结合,应该成为病毒感染的一种强大的预防和诊断工具。-Yang, S. W., Jang, Y. H., Kwon, S. B., Lee, Y. J., Chae, W., Byun, Y. H., Kim, P., Park, C., Lee, Y. J., Kim, C. K., Kim, Y. S., Choi, S. I., Seong, B. L. 利用 RNA 介导的伴侣组装流感血凝素的免疫相关构象。