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嵌合和突变的 CARD9 构建体使我们能够分析 CARD-CC 蛋白家族中保守和分化的自身抑制机制。

Chimeric and mutant CARD9 constructs enable analyses of conserved and diverged autoinhibition mechanisms in the CARD-CC protein family.

机构信息

Unit of Molecular Signal Transduction in Inflammation, VIB-UGent Center for Inflammation Research, Belgium.

Department of Biomedical Molecular Biology, Ghent University, Belgium.

出版信息

FEBS J. 2024 Mar;291(6):1220-1245. doi: 10.1111/febs.17035. Epub 2023 Dec 25.

Abstract

Caspase recruitment domain-containing protein (CARD)9, CARD10, CARD11, and CARD14 all belong to the CARD-coiled coil (CC) protein family and originated from a single common ancestral protein early in vertebrate evolution. All four proteins form CARD-CC/BCL10/MALT1 (CBM) complexes leading to nuclear factor-kappa-B (NF-κB) activation after upstream phosphorylation by various protein kinase C (PKC) isoforms. CBM complex signaling is critical for innate and adaptive immunity, but aberrant activation can cause autoimmune or autoinflammatory diseases, or be oncogenic. CARD9 shows a superior auto-inhibition compared with other CARD-CC family proteins, with very low spontaneous activity when overexpressed in HEK293T cells. In contrast, the poor auto-inhibition of other CARD-CC family proteins, especially CARD10 (CARMA3) and CARD14 (CARMA2), is hampering characterization of upstream activators or activating mutations in overexpression studies. We grafted different domains from CARD10, 11, and 14 on CARD9 to generate chimeric CARD9 backbones for functional characterization of activating mutants using NF-κB reporter gene activation in HEK293T cells as readout. CARD11 (CARMA1) activity was not further reduced by grafting on CARD9 backbones. The chimeric CARD9 approach was subsequently validated by using several known disease-associated mutations in CARD10 and CARD14, and additional screening allowed us to identify several previously unknown activating natural variants in human CARD9 and CARD10. Using Genebass as a resource of exome-based disease association statistics, we found that activated alleles of CARD9 correlate with irritable bowel syndrome (IBS), constipation, osteoarthritis, fibromyalgia, insomnia, anxiety, and depression, which can occur as comorbidities.

摘要

Caspase recruitment domain-containing protein (CARD)9、CARD10、CARD11 和 CARD14 均属于 CARD-卷曲螺旋(CC)蛋白家族,起源于脊椎动物早期的单个共同祖先蛋白。这四种蛋白均形成 CARD-CC/BCL10/MALT1(CBM)复合物,在各种蛋白激酶 C(PKC)同工型上游磷酸化后导致核因子-κB(NF-κB)激活。CBM 复合物信号对于先天和适应性免疫至关重要,但异常激活可导致自身免疫或自身炎症性疾病,或致癌。与其他 CARD-CC 家族蛋白相比,CARD9 表现出优越的自动抑制作用,在 HEK293T 细胞中过表达时活性非常低。相比之下,其他 CARD-CC 家族蛋白,特别是 CARD10(CARMA3)和 CARD14(CARMA2)的自动抑制作用较差,这阻碍了在上调研究中对上游激活剂或激活突变的特征描述。我们将来自 CARD10、11 和 14 的不同结构域嫁接到 CARD9 上,生成嵌合 CARD9 骨架,用于使用 NF-κB 报告基因激活作为读出值在 HEK293T 细胞中对激活突变体进行功能表征。在 CARD9 骨架上嫁接不会进一步降低 CARD11(CARMA1)的活性。该嵌合 CARD9 方法随后通过使用 CARD10 和 CARD14 中的几种已知疾病相关突变进行验证,并且额外的筛选使我们能够在人类 CARD9 和 CARD10 中鉴定出几种以前未知的激活天然变体。使用 Genebass 作为基于外显子的疾病关联统计资源,我们发现 CARD9 的激活等位基因与肠易激综合征(IBS)、便秘、骨关节炎、纤维肌痛、失眠、焦虑和抑郁相关,这些疾病可能同时存在。

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