Duncan Joseph A, Bergstralh Daniel T, Wang Yanhong, Willingham Stephen B, Ye Zhengmao, Zimmermann Albert G, Ting Jenny Pan-Yun
Department of Medicine, Division of Infectious Diseases, University of North Carolina, Chapel Hill, NC 27599-7295, USA.
Proc Natl Acad Sci U S A. 2007 May 8;104(19):8041-6. doi: 10.1073/pnas.0611496104. Epub 2007 May 2.
The CATERPILLER (CLR/NLR) gene family encodes a family of putative nucleotide-binding proteins important for host defense. Although nucleotide binding is thought to be central to this family, this aspect is largely unstudied. The CATERPILLER protein cryopyrin/NALP3 regulates IL-1beta processing by assembling the multimeric inflammasome complex. Mutations within the exon encoding the nucleotide-binding domain are associated with hereditary periodic fevers characterized by constitutive IL-1beta production. We demonstrate that purified cryopyrin binds ATP, dATP, and ATP-agarose, but not CTP, GTP, or UTP, and exhibits ATPase activity. Mutation of the nucleotide-binding domain reduces ATP binding, caspase-1 activation, IL-1beta production, cell death, macromolecular complex formation, self-association, and association with the inflammasome component ASC. Disruption of nucleotide binding abolishes the constitutive activation of disease-associated mutants, identifying nucleotide binding by cryopyrin as a potential target for antiinflammatory pharmacologic intervention.
CATERPILLER(CLR/NLR)基因家族编码一类对宿主防御至关重要的假定核苷酸结合蛋白。尽管核苷酸结合被认为是该家族的核心,但这方面在很大程度上尚未得到研究。CATERPILLER蛋白冷吡啉/NALP3通过组装多聚体炎性小体复合物来调节IL-1β的加工。编码核苷酸结合域的外显子内的突变与以组成性IL-1β产生为特征的遗传性周期性发热相关。我们证明纯化的冷吡啉能结合ATP、dATP和ATP-琼脂糖,但不结合CTP、GTP或UTP,并表现出ATP酶活性。核苷酸结合域的突变会降低ATP结合、半胱天冬酶-1激活、IL-1β产生、细胞死亡、大分子复合物形成、自我缔合以及与炎性小体成分ASC的缔合。核苷酸结合的破坏消除了疾病相关突变体的组成性激活,确定冷吡啉的核苷酸结合是抗炎药物干预的潜在靶点。