设计短肽以阻断BTLA/HVEM相互作用以促进抗癌T细胞反应。

Design of short peptides to block BTLA/HVEM interactions for promoting anticancer T-cell responses.

作者信息

Spodzieja Marta, Lach Sławomir, Iwaszkiewicz Justyna, Cesson Valérie, Kalejta Katarzyna, Olive Daniel, Michielin Olivier, Speiser Daniel E, Zoete Vincent, Derré Laurent, Rodziewicz-Motowidło Sylwia

机构信息

University of Gdansk, Department of Chemistry, Gdansk, Poland.

SIB Swiss Institute of Bioinformatics, Quartier Sorge, Batiment Genopode, Lausanne, Switzerland.

出版信息

PLoS One. 2017 Jun 8;12(6):e0179201. doi: 10.1371/journal.pone.0179201. eCollection 2017.

Abstract

Antibody based immune-checkpoint blockade therapy is a major breakthrough in oncology, leading to clinical benefit for cancer patients. Among the growing family of inhibitory receptors, the B and T lymphocyte attenuator (BTLA), which interacts with herpes virus entry mediator (HVEM), is a promising target for immunotherapy. Indeed, BTLA inhibits T-cell proliferation and cytokine production. The crystal structure of the BTLA/HVEM complex has shown that the HVEM(26-38) fragment is directly involved in protein binding. We designed and analyzed the capacity of several analogs of this fragment to block the ligation between BTLA and HVEM, using competitive ELISA and cellular assay. We found that the HVEM(23-39) peptide can block BTLA/HVEM ligation. However, the blocking ability was due to the Cys encompassed in this peptide and that even free cysteine targeted the BTLA protein and blocked its interaction with HVEM. These data highlight a Cys-related artefact in vitro, which should be taken in consideration for future development of BTLA/HVEM blocking compounds.

摘要

基于抗体的免疫检查点阻断疗法是肿瘤学领域的一项重大突破,为癌症患者带来了临床益处。在不断增加的抑制性受体家族中,与疱疹病毒进入介质(HVEM)相互作用的B和T淋巴细胞衰减器(BTLA)是免疫治疗的一个有前景的靶点。事实上,BTLA可抑制T细胞增殖和细胞因子产生。BTLA/HVEM复合物的晶体结构表明,HVEM(26 - 38)片段直接参与蛋白质结合。我们使用竞争性ELISA和细胞试验设计并分析了该片段的几种类似物阻断BTLA与HVEM之间连接的能力。我们发现HVEM(23 - 39)肽可以阻断BTLA/HVEM连接。然而,这种阻断能力归因于该肽中包含的半胱氨酸,甚至游离的半胱氨酸也靶向BTLA蛋白并阻断其与HVEM的相互作用。这些数据突出了体外与半胱氨酸相关的假象,在BTLA/HVEM阻断化合物的未来开发中应予以考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb4a/5464627/487bb399152e/pone.0179201.g001.jpg

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