Bioinformatics and Genomics Program, Centre for Genomic Regulation (CRG), Barcelona 08003, Spain.
BMC Genet. 2013 Jul 6;14:61. doi: 10.1186/1471-2156-14-61.
The Butyrophilin-like (BTNL) proteins are likely to play an important role in inflammation and immune response. Like the B7 protein family, many human and murine BTNL members have been shown to control T lymphocytes response, and polymorphisms in human BTNL2 have been linked to several inflammatory diseases, such as pulmonary sarcoidosis, inflammatory bowel disease and neonatal lupus.
In this study we provide a comprehensive population, genomic and transcriptomic analysis of a 56-kb deletion copy number variant (CNV), located within two segmental duplications of two genes belonging to the BTNL family, namely BTNL8 and BTNL3. We confirm the presence of a novel BTNL8*3 fusion-protein product, and show an influence of the deletion variant on the expression level of several genes involved in immune function, including BTNL9, another member of the same family. Moreover, by genotyping HapMap and human diversity panel (HGDP) samples, we demonstrate a clear difference in the stratification of the BTNL8_BTNL3-del allele frequency between major continental human populations.
Despite tremendous progress in the field of structural variation, rather few CNVs have been functionally characterized so far. Here, we show clear functional consequences of a new deletion CNV (BTNL8_BTNL3-del) with potentially important implication in the human immune system and in inflammatory and proliferative disorders. In addition, the marked population differences found of BTNL8_BTNL3-del frequencies suggest that this deletion CNV might have evolved under positive selection due to environmental conditions in some populations, with potential phenotypic consequences.
Butyrophilin-like(BTNL)蛋白可能在炎症和免疫反应中发挥重要作用。像 B7 蛋白家族一样,许多人和鼠类的 BTNL 成员已被证明可以控制 T 淋巴细胞的反应,人类 BTNL2 的多态性与几种炎症性疾病有关,如肺结节病、炎症性肠病和新生儿狼疮。
在这项研究中,我们对位于两个 BTNL 家族基因(BTNL8 和 BTNL3)内两个串联重复序列之间的 56kb 缺失拷贝数变异(CNV)进行了全面的群体、基因组和转录组分析。我们证实了一种新型 BTNL8*3 融合蛋白产物的存在,并显示该缺失变异对参与免疫功能的几个基因(包括 BTNL9,同一家族的另一个成员)的表达水平有影响。此外,通过对 HapMap 和人类多样性面板(HGDP)样本进行基因分型,我们证明了 BTNL8_BTNL3-del 等位基因频率在主要大陆人群中的分层存在明显差异。
尽管在结构变异领域取得了巨大进展,但迄今为止,只有少数 CNV 得到了功能特征描述。在这里,我们展示了一个新的缺失 CNV(BTNL8_BTNL3-del)的明确功能后果,它可能对人类免疫系统以及炎症和增殖性疾病具有重要影响。此外,我们发现 BTNL8_BTNL3-del 频率存在明显的人群差异,这表明该缺失 CNV 可能在某些人群的环境条件下受到正选择而进化,具有潜在的表型后果。