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A Unique Protein Self-Assembling Nanoparticle with Significant Advantages in Vaccine Development and Production

机译:一种独特的蛋白质自组装纳米粒子,具有疫苗开发和生产中的显着优势

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Nanoparticles are playing an increasingly powerful role in vaccine development. Here, we report the repurposing of nonstructural proteins 10 and 11 (hereafter NSP10) from the replicase polyprotein 1a (pp1a) of the human SARS coronavirus (severe acute respiratory syndrome) as a novel self-assembling platform for bioengineered nanoparticles for a variety of applications including vaccines. NSP10 represents a 152 amino acid, 17?kD zinc finger transcription/regulatory protein which self-assembles to form a spherical 84?? diameter nanoparticle with dodecahedral trigonal 32 point symmetry. As a self-assembling nanoparticle, NSP10 possesses numerous advantages in vaccine development and antigen display, including the unusual particle surface disposition of both the N- and C-termini. Each set of N- or C-termini is spatially disposed in a tetrahedral arrangement and positioned at optimal distances from the 3-fold axes (8-10??) to nucleate and stabilize the correct folding of complex helical or fibrous trimeric receptors, such as those responsible for viral tropism and cell infection. An application example in the exploratory development of a therapeutic vaccine for idiopathic pulmonary fibrosis (IPF), including preliminary analysis and immunogenic properties, is presented. The use of this system could accelerate the discovery and development of vaccines for a number of human, livestock, and veterinary applications.
机译:纳米粒子在疫苗开发中发挥着越来越强大的作用。在这里,我们将来自人SARS冠状病毒(严重急性呼吸综合征(重症急性呼吸综合征)的复制酶聚丙烯蛋白1a(pp1a)的非结构蛋白10和11(下文NSP10)报告为新型自组装平台,用于各种应用的生物工程纳米粒子包括疫苗。 NSP10代表152个氨基酸,17 kd锌指转录/调节蛋白,其自组装以形成球形84 ??直径纳米粒子与十二次面向三角形32点对称性。作为一种自组装纳米粒子,NSP10具有疫苗发育和抗原显示器的许多优点,包括N-和C-Termini的异常颗粒表面处理。每组N-或C-Termini在四面体布置中设置,并定位在从3倍轴(8-10°)的最佳距离(8-10Ω)以核心并稳定复杂螺旋或纤维三聚体受体的正确折叠作为负责病毒性的热衷和细胞感染的人。提出了在特发性肺纤维化(IPF)的治疗疫苗的探索性发展中的应用实例,包括初步分析和免疫原性。该系统的使用可以加速许多人,牲畜和兽医应用的疫苗的发现和开发。

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