Vallès X, Sarrias M-R, Casals F, Farnós M, Piñer R, Suárez B, Morais L, Mandomando I, Sigaúque B, Roca A, Alonso P L, Torres A, Thielens N M, Lozano F
International Research Center in Health of Barcelona (CRESIB), Hospital Clínic de Barcelona/IDIBAPS, Barcelona, Spain.
Tissue Antigens. 2009 Oct;74(4):298-307. doi: 10.1111/j.1399-0039.2009.01328.x.
The mannose-binding lectin (MBL) pathway of complement system is activated when carbohydrate-bound MBL forms complexes with different serine proteases (MASP-1, MASP-2 and MASP-3), among which MASP-2 has a predominant functional role. Polymorphisms impairing the quantity and/or the functional activity of proteins encoded by the MBL2 and MASP2 genes have been reported in all human populations showing different allelic frequency and distribution. This likely reflects the existence of environmental influences on MBL2 and MASP2 genetic evolution. Herewith, we conducted a study in a children population from Mozambique to analyse the genetic diversity of sequences corresponding to the promoter and collagen-like region (exon 1) of MBL2 and to the CUB-1 and epidermal growth factor domain (exon 3) of MASP2, which are critical regions for the formation of functional MBL/MASP-2 complexes. Our results show a high prevalence of MBL-intermediate/low genotypes (43.5%); the description of new alleles and a high level of sequence polymorphism at both MBL2 and MASP2, with no statistical evidence for positive or balancing selection. Furthermore, Biacore analyses performed to explore the functional relevance of the MASP2 variants found [T73M (2.9%), R84Q (12.7%) and P111L (25.4%)] were compared with those of two previously reported variants (R103C and D105G). None of the analysed MASP2 variants, with the exception of D105G, interfered with interactions with either MBL or ficolins (H and L).
当与碳水化合物结合的甘露糖结合凝集素(MBL)与不同的丝氨酸蛋白酶(MASP-1、MASP-2和MASP-3)形成复合物时,补体系统的MBL途径被激活,其中MASP-2具有主要的功能作用。在所有人群中均报道了损害MBL2和MASP2基因编码蛋白数量和/或功能活性的多态性,这些多态性表现出不同的等位基因频率和分布。这可能反映了环境对MBL2和MASP2基因进化的影响。在此,我们对莫桑比克儿童群体进行了一项研究,以分析与MBL2启动子和胶原样区域(外显子1)以及MASP2的CUB-1和表皮生长因子结构域(外显子3)相对应的序列的遗传多样性,这些区域是功能性MBL/MASP-2复合物形成的关键区域。我们的结果显示MBL中等/低基因型的患病率很高(43.5%);发现了新的等位基因,并在MBL2和MASP2上均有高水平的序列多态性,没有统计学证据支持正向或平衡选择。此外,进行了Biacore分析以探索所发现的MASP2变体[T73M(2.9%)、R84Q(12.7%)和P111L(25.4%)]的功能相关性,并与之前报道的两个变体(R103C和D105G)进行了比较。除D105G外,所分析的MASP2变体均未干扰与MBL或纤维胶凝蛋白(H和L)的相互作用。