Amano Mariane T, Ferriani Virgínia P L, Florido Marlene P C, Reis Edimara S, Delcolli Maria I M V, Azzolini Ana E C S, Assis-Pandochi Ana I, Sjöholm Anders G, Farah Chuck S, Jensenius Jens C, Isaac Lourdes
Departamento de Imunologia, Instituto de Ciências Biomédicas, Universidade de São Paulo, Av. Prof. Lineu Prestes 1730, CEP 05508-900 São Paulo, SP, Brazil.
Mol Immunol. 2008 Mar;45(6):1693-702. doi: 10.1016/j.molimm.2007.09.034. Epub 2007 Nov 19.
Deficiencies of complement proteins of the classical pathway are strongly associated with the development of autoimmune diseases. Deficiency of C1r has been observed to occur concomitantly with deficiency in C1s and 9 out of 15 reported cases presented systemic lupus erythematosus (SLE). Here, we describe a family in which all four children are deficient in C1s but only two of them developed SLE. Hemolytic activity mediated by the alternative and the lectin pathways were normal, but classical pathway activation was absent in all children's sera. C1s was undetectable, while in the parents' sera it was lower than in the normal controls. The levels of C1r observed in the siblings and parents sera were lower than in the control, while the concentrations of other complement proteins (C3, C4, MBL and MASP-2) were normal in all family members. Impairment of C1s synthesis was observed in the patients' fibroblasts when analyzed by confocal microscopy. We show that all four siblings are homozygous for a mutation at position 938 in exon 6 of the C1s cDNA that creates a premature stop codon. Our investigations led us to reveal the presence of previously uncharacterized splice variants of C1s mRNA transcripts in normal human cells. These variants are derived from the skipping of exon 3 and from the use of an alternative 3' splice site within intron 1 which increases the size of exon 2 by 87 nucleotides.
经典途径补体蛋白的缺陷与自身免疫性疾病的发生密切相关。已观察到C1r缺乏与C1s缺乏同时出现,在15例报告病例中有9例患有系统性红斑狼疮(SLE)。在此,我们描述了一个家庭,其中所有四个孩子都缺乏C1s,但只有两个孩子患了SLE。替代途径和凝集素途径介导的溶血活性正常,但所有孩子的血清中均未出现经典途径激活。C1s检测不到,而在父母的血清中其水平低于正常对照。在兄弟姐妹和父母的血清中观察到的C1r水平低于对照组,而所有家庭成员中其他补体蛋白(C3、C4、MBL和MASP - 2)的浓度均正常。通过共聚焦显微镜分析发现,患者的成纤维细胞中C1s合成受损。我们发现所有四个兄弟姐妹在C1s cDNA外显子6的938位均存在纯合突变,该突变产生了一个提前终止密码子。我们的研究使我们揭示了正常人细胞中以前未表征的C1s mRNA转录本剪接变体的存在。这些变体源自外显子3的跳跃以及内含子1内一个替代3'剪接位点的使用,这使得外显子2的大小增加了87个核苷酸。