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在体外重建 CARD9 信号体中的相互作用。

In vitro reconstitution of interactions in the CARD9 signalosome.

机构信息

School of Chemistry and Biochemistry and Graduate School of Biochemistry, Yeungnam University, Gyeongsangnam 38541, Republic of Korea.

出版信息

Mol Med Rep. 2017 Oct;16(4):3910-3916. doi: 10.3892/mmr.2017.7116. Epub 2017 Jul 31.

Abstract

The caspase-associated recruitment domain (CARD)‑containing protein 9 (CARD9) signalosome is composed of CARD9, B‑cell CLL/lymphoma 10 (BCL10) and mucosa‑associated lymphoid tissue lymphoma translocation protein 1 (MALT1). The CARD9 signalosome has been reported to exert critical functions in the immunoreceptor tyrosine‑based activation motif‑coupled receptor‑mediated activation of myeloid cells, through nuclear factor‑κB pathways during innate immunity processes. During CARD9 signalosome assembly, BCL10 has been revealed to function as an adaptor protein and to interact with CARD9 via CARD‑CARD interactions; BCL10 also interacts with MALT1 via its C‑terminal Ser/Thr‑rich region and the first immunoglobulin domain of MALT1. The CARD9 signalosome is implicated in critical biological processes; however, its structural and biochemical characteristics have yet to be elucidated. In the present study, CARD9 and BCL10 CARDs were successfully purified and characterized, and their biochemical properties were investigated. In addition, CARD9‑BCL10 complexes were reconstituted in vitro under low salt and pH conditions. Furthermore, based on structural modeling data, a scheme was proposed to describe the interactions between CARD9 and BCL10. This provides a further understanding of the mechanism of how the CARD9 signalosome may be assembled.

摘要

CARD 结构域包含蛋白 9(CARD9)信号体由 CARD9、B 细胞 CLL/淋巴瘤 10(BCL10)和黏膜相关淋巴组织淋巴瘤易位蛋白 1(MALT1)组成。据报道,CARD9 信号体在免疫受体酪氨酸激活基序偶联受体介导的髓样细胞激活中发挥关键作用,在先天免疫过程中通过核因子-κB 途径。在 CARD9 信号体组装过程中,BCL10 作为衔接蛋白发挥作用,并通过 CARD-CARD 相互作用与 CARD9 相互作用;BCL10 还通过其 C 末端 Ser/Thr 丰富区域和 MALT1 的第一个免疫球蛋白结构域与 MALT1 相互作用。CARD9 信号体参与关键的生物学过程;然而,其结构和生化特性尚未阐明。在本研究中,成功地纯化和表征了 CARD9 和 BCL10 CARDs,并研究了它们的生化特性。此外,在低盐和 pH 条件下在体外重新构建了 CARD9-BCL10 复合物。此外,基于结构建模数据,提出了一个方案来描述 CARD9 和 BCL10 之间的相互作用。这进一步了解了 CARD9 信号体可能组装的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd83/5646969/cf42f9c46a89/MMR-16-04-3910-g00.jpg

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