Durandy Anne, Peron Sophie, Fischer Alain
Inserm U768, René Descartes-Paris 5 University, France.
Curr Opin Rheumatol. 2006 Jul;18(4):369-76. doi: 10.1097/01.bor.0000231905.12172.b5.
The recent elucidation of the molecular defects leading to hyper-IgM syndromes has provided considerable insight into the complex mechanisms that govern the antibody maturation in humans.
The study of a large cohort of patients revealed unexpected clinical, immunological and genetic findings, which have significant implications on the molecular basis of immunoglobulin class switch recombination and somatic hypermutation, as shown for hypomorphic mutations in the nuclear factor-kappaB essential modulator (NEMO) gene and peculiar activation-induced cytidine deaminase defects that differently affect class switch recombination and somatic hypermutation. The description of the hyper-IgM condition due to mutations in the gene encoding uracil-N glycosylase has been essential for defining the DNA-editing activity of activation-induced cytidine deaminase. Novel findings are awaited from the study of the yet genetically undefined hyper-IgM syndromes, leading to the identification of activation-induced cytidine deaminase cofactors and proteins involved in class switch recombination-induced DNA repair. In the genetically characterized hyper-IgM syndromes, the precise identification of the molecular defect allows the evaluation of hyper-IgM complications, and thus aids assessment of prognosis and proper survey and treatment.
The important contribution made by investigation of this condition improves our understanding of the physiology of the antibody response in humans.
近期对导致高IgM综合征的分子缺陷的阐明,为深入了解人类抗体成熟的复杂机制提供了相当多的见解。
对大量患者队列的研究揭示了意外的临床、免疫学和遗传学发现,这些发现对免疫球蛋白类别转换重组和体细胞超突变的分子基础具有重要意义,如核因子-κB必需调节因子(NEMO)基因的亚效突变以及不同影响类别转换重组和体细胞超突变的特殊激活诱导胞苷脱氨酶缺陷所示。对尿嘧啶-N-糖基化酶编码基因突变导致的高IgM状况的描述,对于确定激活诱导胞苷脱氨酶的DNA编辑活性至关重要。对尚未明确遗传机制的高IgM综合征的研究有望获得新发现,从而确定激活诱导胞苷脱氨酶的辅因子以及参与类别转换重组诱导的DNA修复的蛋白质。在已明确遗传特征的高IgM综合征中,分子缺陷的精确识别有助于评估高IgM并发症,进而辅助预后评估以及恰当的监测和治疗。
对这种疾病的研究所做出的重要贡献增进了我们对人类抗体反应生理学的理解。