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FadL外膜蛋白的免疫显性细胞外环可诱导产生具有调理和生长抑制活性的抗体。

Immunodominant extracellular loops of FadL outer membrane proteins elicit antibodies with opsonic and growth-inhibitory activities.

作者信息

Delgado Kristina N, Caimano Melissa J, Orbe Isabel C, Vicente Crystal F, La Vake Carson J, Grassmann André A, Moody M Anthony, Radolf Justin D, Hawley Kelly L

机构信息

Department of Medicine, UConn Health, Farmington, Connecticut, United States.

Department of Pediatrics, UConn Health, Farmington, CT, United States.

出版信息

bioRxiv. 2024 Jul 30:2024.07.30.605823. doi: 10.1101/2024.07.30.605823.

Abstract

The global resurgence of syphilis has created a potent stimulus for vaccine development. To identify potentially protective antibodies (Abs) against (), we used thioredoxin (Trx) to display extracellular loops (ECLs) from three outer membrane protein families (outer membrane factors for efflux pumps, eight-stranded β-barrels, and FadLs) to assess their reactivity with immune rabbit serum (IRS). Five ECLs from the FadL orthologs TP0856, TP0858 and TP0865 were immunodominant. Rabbits and mice immunized with these five Trx constructs produced ECL-specific Abs that promoted opsonophagocytosis of by rabbit peritoneal and murine bone marrow-derived macrophages at levels comparable to IRS and mouse syphilitic serum. ECL-specific rabbit and mouse Abs also impaired viability, motility, and cellular attachment of spirochetes during cultivation. The results support the use of ECL-based vaccines and suggest that ECL-specific Abs promote spirochete clearance via Fc receptor-independent as well as Fc receptor-dependent mechanisms.

摘要

梅毒在全球范围内的再度流行对疫苗研发产生了强大的推动作用。为了鉴定针对梅毒螺旋体的潜在保护性抗体(Abs),我们利用硫氧还蛋白(Trx)展示来自三个梅毒螺旋体外膜蛋白家族(外排泵的外膜因子、八链β桶和脂肪酸转运蛋白FadL)的细胞外环(ECLs),以评估它们与免疫兔血清(IRS)的反应性。来自FadL直系同源物TP0856、TP0858和TP0865的五个ECLs具有免疫显性。用这五种Trx构建体免疫的兔子和小鼠产生了ECL特异性抗体,这些抗体促进兔腹膜巨噬细胞和小鼠骨髓来源的巨噬细胞对梅毒螺旋体的调理吞噬作用,其水平与IRS和小鼠梅毒血清相当。ECL特异性兔抗体和小鼠抗体在梅毒螺旋体培养过程中也损害了螺旋体的活力、运动性和细胞附着。这些结果支持使用基于ECL的疫苗,并表明ECL特异性抗体通过不依赖Fc受体以及依赖Fc受体的机制促进螺旋体清除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dba9/11312542/6649de3020c2/nihpp-2024.07.30.605823v1-f0001.jpg

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