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脂蛋白脂质在Trumenba(一种针对B型脑膜炎球菌性脑膜炎的自佐剂疫苗)中的双重作用。

The Dual Role of Lipids of the Lipoproteins in Trumenba, a Self-Adjuvanting Vaccine Against Meningococcal Meningitis B Disease.

作者信息

Luo Yin, Friese Olga V, Runnels Herbert A, Khandke Lakshmi, Zlotnick Gary, Aulabaugh Ann, Gore Thomas, Vidunas Eugene, Raso Stephen W, Novikova Elena, Byrne Emilia, Schlittler Michael, Stano Donald, Dufield Robert L, Kumar Sandeep, Anderson Annaliesa S, Jansen Kathrin U, Rouse Jason C

机构信息

Pfizer Biotherapeutics Pharmaceutical Sciences, 1 Burtt Rd., Andover, Massachusetts, USA.

Pfizer Biotherapeutics Pharmaceutical Sciences, 700 Chesterfield Pkwy W, St. Louis, Missouri, USA.

出版信息

AAPS J. 2016 Nov;18(6):1562-1575. doi: 10.1208/s12248-016-9979-x. Epub 2016 Sep 7.

Abstract

Trumenba (bivalent rLP2086) is a vaccine licensed for the prevention of meningococcal meningitis disease caused by Neisseria meningitidis serogroup B (NmB) in individuals 10-25 years of age in the USA. The vaccine is composed of two factor H binding protein (fHbp) variants that were recombinantly expressed in Escherichia coli as native lipoproteins: rLP2086-A05 and rLP2086-B01. The vaccine was shown to induce potent bactericidal antibodies against a broad range of NmB isolates expressing fHbp that were different in sequence from the fHbp vaccine antigens. Here, we describe the characterization of the vaccine antigens including the elucidation of their structure which is characterized by two distinct motifs, the polypeptide domain and the N-terminal lipid moiety. In the vaccine formulation, the lipoproteins self-associate to form micelles driven by the hydrophobicity of the lipids and limited by the size of the folded polypeptides. The micelles help to increase the structural stability of the lipoproteins in the absence of bacterial cell walls. Analysis of the lipoproteins in Toll-like receptor (TLR) activation assays revealed their TLR2 agonist activity. This activity was lost with removal of the O-linked fatty acids, similar to removal of all lipids, demonstrating that this moiety plays an adjuvant role in immune activation. The thorough understanding of the structure and function of each moiety of the lipoproteins, as well as their relationship, lays the foundation for identifying critical parameters to guide vaccine development and manufacture.

摘要

Trumenba(二价重组脂蛋白2086)是一种已获许可的疫苗,用于预防美国10至25岁人群中由B群脑膜炎奈瑟菌(NmB)引起的脑膜炎球菌性脑膜炎疾病。该疫苗由两种因子H结合蛋白(fHbp)变体组成,它们在大肠杆菌中作为天然脂蛋白进行重组表达:rLP2086-A05和rLP2086-B01。该疫苗被证明能诱导产生针对多种表达fHbp的NmB分离株的强效杀菌抗体,这些分离株的fHbp序列与疫苗抗原不同。在此,我们描述了疫苗抗原的特性,包括对其结构的阐明,其结构的特征是有两个不同的基序,即多肽结构域和N端脂质部分。在疫苗制剂中,脂蛋白通过脂质的疏水性自缔合形成胶束,并受到折叠多肽大小的限制。这些胶束有助于在没有细菌细胞壁的情况下提高脂蛋白的结构稳定性。在Toll样受体(TLR)激活试验中对脂蛋白的分析揭示了它们的TLR2激动剂活性。去除O-连接脂肪酸后,这种活性丧失,类似于去除所有脂质,这表明该部分在免疫激活中起佐剂作用。对脂蛋白各部分的结构和功能及其相互关系的深入理解,为确定指导疫苗开发和生产的关键参数奠定了基础。

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