Structure and conformational variability of the HER2-trastuzumab-pertuzumab complex

IF 3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of structural biology Pub Date : 2024-05-07 DOI:10.1016/j.jsb.2024.108095
Rémi Ruedas , Rémi Vuillemot , Thibault Tubiana , Jean-Marie Winter , Laura Pieri , Ana-Andreea Arteni , Camille Samson , Slavica Jonic , Magali Mathieu , Stéphane Bressanelli
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Abstract

Single particle analysis from cryogenic transmission electron microscopy (cryo-EM) is particularly attractive for complexes for which structure prediction remains intractable, such as antibody-antigen complexes. Here we obtain the detailed structure of a particularly difficult complex between human epidermal growth factor receptor 2 (HER2) and the antigen-binding fragments from two distinct therapeutic antibodies binding to distant parts of the flexible HER2, pertuzumab and trastuzumab (HTP). We highlight the strengths and limitations of current data processing software in dealing with various kinds of heterogeneities, particularly continuous conformational heterogeneity, and in describing the motions that can be extracted from our dataset. Our HTP structure provides a more detailed view than the one previously available for this ternary complex. This allowed us to pinpoint a previously overlooked loop in domain IV that may be involved both in binding of trastuzumab and in HER2 dimerization. This finding may contribute to explain the synergistic anticancer effect of the two antibodies. We further propose that the flexibility of the HTP complex, beyond the difficulties it causes for cryo-EM analysis, actually reflects regulation of HER2 signaling and its inhibition by therapeutic antibodies. Notably we obtain our best data with ultra-thin continuous carbon grids, showing that with current cameras their use to alleviate particle misdistribution is compatible with a protein complex of only 162 kDa. Perhaps most importantly, we provide here a dataset for such a smallish protein complex for further development of software accounting for continuous conformational heterogeneity in cryo-EM images.

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HER2-trastuzumab-pertuzumab 复合物的结构和构象变化。
低温透射电子显微镜(cryo-EM)的单颗粒分析对于结构预测仍然难以实现的复合物(如抗体-抗原复合物)尤其具有吸引力。在这里,我们获得了人类表皮生长因子受体 2(HER2)与两种不同的治疗性抗体的抗原结合片段之间的一个特别困难的复合物的详细结构,这两种不同的治疗性抗体与柔性 HER2 的不同部分结合,即 pertuzumab 和 trastuzumab (HTP)。我们强调了当前数据处理软件在处理各种异质性(尤其是连续构象异质性)以及描述可从我们的数据集中提取的运动方面的优势和局限性。我们的 HTP 结构为这一三元复合物提供了比以前更详细的视图。这使我们能够确定结构域 IV 中一个以前被忽视的环路,它可能同时参与了曲妥珠单抗的结合和 HER2 的二聚化。这一发现可能有助于解释这两种抗体的协同抗癌作用。我们进一步提出,HTP 复合物的灵活性除了给低温电子显微镜分析带来困难之外,实际上还反映了治疗性抗体对 HER2 信号传导及其抑制的调节作用。值得注意的是,我们利用超薄连续碳网格获得了最佳数据,这表明在目前的照相机中,利用碳网格来减轻粒子的错误分布与仅 162 kDa 的蛋白质复合物是兼容的。也许最重要的是,我们在这里为这样一个较小的蛋白质复合物提供了一个数据集,用于进一步开发在低温电子显微镜图像中考虑连续构象异质性的软件。
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来源期刊
Journal of structural biology
Journal of structural biology 生物-生化与分子生物学
CiteScore
6.30
自引率
3.30%
发文量
88
审稿时长
65 days
期刊介绍: Journal of Structural Biology (JSB) has an open access mirror journal, the Journal of Structural Biology: X (JSBX), sharing the same aims and scope, editorial team, submission system and rigorous peer review. Since both journals share the same editorial system, you may submit your manuscript via either journal homepage. You will be prompted during submission (and revision) to choose in which to publish your article. The editors and reviewers are not aware of the choice you made until the article has been published online. JSB and JSBX publish papers dealing with the structural analysis of living material at every level of organization by all methods that lead to an understanding of biological function in terms of molecular and supermolecular structure. Techniques covered include: • Light microscopy including confocal microscopy • All types of electron microscopy • X-ray diffraction • Nuclear magnetic resonance • Scanning force microscopy, scanning probe microscopy, and tunneling microscopy • Digital image processing • Computational insights into structure
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