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高分辨率糖基化位点工程化方法鉴定了 MICA 表位,该表位对抑制抗 MICA 抗体的脱落活性至关重要。

High-resolution glycosylation site-engineering method identifies MICA epitope critical for shedding inhibition activity of anti-MICA antibodies.

机构信息

a Department of Antibody Engineering , Genentech Inc ., South San Francisco , USA.

b Structural Biology , Genentech Inc ., South San Francisco , USA.

出版信息

MAbs. 2019 Jan;11(1):75-93. doi: 10.1080/19420862.2018.1532767. Epub 2018 Nov 22.

Abstract

As an immune evasion strategy, MICA and MICB, the major histocompatibility complex class I homologs, are proteolytically cleaved from the surface of cancer cells leading to impairment of CD8 + T cell- and natural killer cell-mediated immune responses. Antibodies that inhibit MICA/B shedding from tumors have therapeutic potential, but the optimal epitopes are unknown. Therefore, we developed a high-resolution, high-throughput glycosylation-engineered epitope mapping (GEM) method, which utilizes site-specific insertion of N-linked glycans onto the antigen surface to mask local regions. We apply GEM to the discovery of epitopes important for shedding inhibition of MICA/B and validate the epitopes at the residue level by alanine scanning and X-ray crystallography (Protein Data Bank accession numbers 6DDM (1D5 Fab-MICA008), 6DDR (13A9 Fab-MICA008), 6DDV (6E1 Fab-MICA*008). Furthermore, we show that potent inhibition of MICA shedding can be achieved by antibodies that bind GEM epitopes adjacent to previously reported cleavage sites, and that these anti-MICA/B antibodies can prevent tumor growth in vivo.

摘要

作为一种免疫逃避策略,MICA 和 MICB,主要组织相容性复合体 I 类同系物,从癌细胞表面被蛋白水解切割,导致 CD8+T 细胞和自然杀伤细胞介导的免疫反应受损。抑制肿瘤中 MICA/B 脱落的抗体具有治疗潜力,但最佳表位尚不清楚。因此,我们开发了一种高分辨率、高通量的糖基化工程表位作图(GEM)方法,该方法利用在抗原表面特异性插入 N 连接聚糖来掩盖局部区域。我们将 GEM 应用于发现对 MICA/B 脱落抑制重要的表位,并通过丙氨酸扫描和 X 射线晶体学(蛋白质数据库访问号 6DDM(1D5 Fab-MICA008)、6DDR(13A9 Fab-MICA008)、6DDV(6E1 Fab-MICA*008))在残基水平上验证表位。此外,我们表明,与先前报道的切割位点相邻的结合 GEM 表位的抗体可以有效地抑制 MICA 脱落,并且这些抗 MICA/B 抗体可以防止体内肿瘤生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abbd/6343778/d7265fb71a41/kmab-11-01-1532767-g001.jpg

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