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MEFV基因座的产物吡啉与促凋亡蛋白西瓦相互作用。

Pyrin, product of the MEFV locus, interacts with the proapoptotic protein, Siva.

作者信息

Balci-Peynircioglu Banu, Waite Andrea L, Hu Chunbo, Richards Neil, Staubach-Grosse Ann, Yilmaz Engin, Gumucio Deborah L

机构信息

Department of Medical Biology, Faculty of Medicine, Hacettepe University, Ankara, Turkey.

出版信息

J Cell Physiol. 2008 Sep;216(3):595-602. doi: 10.1002/jcp.21435.

Abstract

Mutations in pyrin cause the autoinflammatory disorder familial Mediterranean fever (FMF), a syndrome characterized by sporadic and unpredictable attacks of fever and localized severe pain. Currently, it is not clear how attacks are triggered, nor why they spontaneously resolve after 2 or 3 days. In fact, the cellular function of the pyrin protein and the molecular underpinnings of its malfunction in FMF have so far eluded clear definition. The identification of pyrin-interacting proteins has the potential to increase our understanding of the cellular networks in which pyrin functions. Previous reports have established that pyrin interacts with the apoptotic protein ASC, the cytoskeletal adaptor protein PSTPIP1, the inflammatory caspase, Caspase-1 and certain forms of the cytosolic anchoring protein 14-3-3. Here, we report that pyrin also interacts with Siva, a pro-apoptotic protein first identified for its interaction with the cytosolic tail of CD27, a TNF family receptor. The interaction between pyrin and Siva involves the C-terminal B30.2/rfp/SRPY domain of pyrin and exon 1 of Siva. We show that Siva and pyrin are indeed co-expressed in human neutrophils, monocytes, and synovial cells. Furthermore, using a novel protein/protein interaction assay, we demonstrate that pyrin can recruit Siva to ASC specks, establishing a potential platform for intersection of ASC and Siva function. Finally, we show that pyrin modulates the apoptotic response to oxidative stress mediated by Siva. Thus, the Siva-pyrin interaction may be a potential target for future therapeutic strategies.

摘要

pyrin基因突变会导致自身炎症性疾病家族性地中海热(FMF),该综合征的特征是发热和局部剧痛的散发性和不可预测性发作。目前尚不清楚发作是如何触发的,也不清楚为何在2至3天后会自行缓解。事实上,迄今为止,pyrin蛋白的细胞功能及其在FMF中功能失调的分子基础仍未明确界定。鉴定与pyrin相互作用的蛋白质有可能增进我们对pyrin发挥功能的细胞网络的理解。先前的报道已证实,pyrin与凋亡蛋白ASC、细胞骨架衔接蛋白PSTPIP1、炎性半胱天冬酶Caspase-1以及某些形式的胞质锚定蛋白14-3-3相互作用。在此,我们报道pyrin还与Siva相互作用,Siva是一种促凋亡蛋白,最初因其与肿瘤坏死因子(TNF)家族受体CD27的胞质尾部相互作用而被鉴定。pyrin与Siva之间的相互作用涉及pyrin的C末端B30.2/rfp/SRPY结构域和Siva的外显子1。我们表明Siva和pyrin确实在人类中性粒细胞、单核细胞和滑膜细胞中共同表达。此外,使用一种新型的蛋白质/蛋白质相互作用检测方法,我们证明pyrin可以将Siva募集到ASC斑点,从而建立一个ASC和Siva功能交叉的潜在平台。最后,我们表明pyrin调节由Siva介导的对氧化应激的凋亡反应。因此,Siva-pyrin相互作用可能是未来治疗策略的一个潜在靶点。

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