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Genetic Variation of COLEC10 and COLEC11 and Association with Serum Levels of Collectin Liver 1 (CL-L1) and Collectin Kidney 1 (CL-K1)

机译:COLEC10和COLEC11的遗传变异以及与血清Collectin肝1(CL-L1)和Collectin肾1(CL-K1)的关联

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摘要

Collectin liver 1 (CL-L1, alias CL-10) and collectin kidney 1 (CL-K1, alias CL-11), encoded by the COLEC10 and COLEC11 genes, respectively, are highly homologous soluble pattern recognition molecules in the lectin pathway of complement. These proteins may be involved in anti-microbial activity and in tissue development as mutations in COLEC11 are one of the causes of the developmental defect syndrome 3MC. We studied variations in COLEC10 and COLEC11, the impact on serum concentration and to what extent CL-L1 and CL-K1 serum concentrations are correlated. We sequenced the promoter regions, exons and exon-intron boundaries of COLEC10 and COLEC11 in samples from Danish Caucasians and measured the corresponding serum levels of CL-L1 and CL-K1. The median concentration of CL-L1 and CL-K1 was 1.87 μg/ml (1.00–4.14 μg/ml) and 0.32 μg/ml (0.11–0.69 μg/ml), respectively. The level of CL-L1 strongly correlated with CL-K1 (ρ = 0.7405, P <0.0001). Both genes were highly conserved with the majority of variations in the non-coding regions. Three non-synonymous variations were tested: COLEC10 Glu78Asp (rs150828850, minor allele frequency (MAF): 0.003), COLEC10 Arg125Trp (rs149331285, MAF: 0.007) and COLEC11 His219Arg (rs7567833, MAF: 0.033). Carriers of COLEC10 Arg125Trp had increased CL-L1 serum levels (P = 0.0478), whereas promoter polymorphism COLEC11-9570C>T (rs3820897) was associated with decreased levels of CL-K1 (P = 0.044). In conclusion, COLEC10 and COLEC11 are highly conserved, which may reflect biological importance of CL-L1 and CL-K1. Moreover, the strong inter individual correlation between the two proteins suggests that a major proportion are found as heterooligomers or subjected to the same regulatory mechanisms.
机译:分别由COLEC10和COLEC11基因编码的Collectin肝1(CL-L1,别名CL-10)和collectin肾1(CL-K1,别名CL-11)是凝集素途径中高度同源的可溶性模式识别分子补充。这些蛋白可能与抗微生物活性和组织发育有关,因为COLEC11中的突变是发育缺陷综合征3MC的原因之一。我们研究了COLEC10和COLEC11的变异,对血清浓度的影响以及CL-L1和CL-K1血清浓度的相关程度。我们对丹麦高加索人样本中COLEC10和COLEC11的启动子区域,外显子和外显子内含子边界进行了测序,并测量了相应的血清CL-L1和CL-K1。 CL-L1和CL-K1的中位数浓度分别为1.87μg/ ml(1.00-4.14μg/ ml)和0.32μg/ ml(0.11-0.69μg/ ml)。 CL-L1的水平与CL-K1高度相关(ρ= 0.7405,P <0.0001)。两种基因都是高度保守的,并且在非编码区具有大多数变异。测试了三个非同义变体:COLEC10 Glu78Asp(rs150828850,次要等位基因频率(MAF):0.003),COLEC10 Arg125Trp(rs149331285,MAF:0.007)和COLEC11 His219Arg(rs7567833,MAF:0.033)。 COLEC10 Arg125Trp的携带者的CL-L1血清水平升高(P = 0.0478),而启动子多态性COLEC11-9570C> T(rs3820897)与CL-K1的降低水平相关(P = 0.044)。总之,COLEC10和COLEC11是高度保守的,这可能反映了CL-L1和CL-K1的生物学重要性。此外,两种蛋白质之间的强烈的个体内部相关性表明,大部分被发现为杂合寡聚物或受到相同的调控机制。

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