Department of Biology, University of Vermont, Burlington, VT, USA.
EMBO Mol Med. 2013 May;5(5):751-61. doi: 10.1002/emmm.201302466. Epub 2013 Apr 15.
Here, we report the biochemical and genetic basis of the Vel blood group antigen, which has been a vexing mystery for decades, especially as anti-Vel regularly causes severe haemolytic transfusion reactions. The protein carrying the Vel blood group antigen was biochemically purified from red blood cell membranes. Mass spectrometry-based de novo peptide sequencing identified this protein to be small integral membrane protein 1 (SMIM1), a previously uncharacterized single-pass membrane protein. Expression of SMIM1 cDNA in Vel- cultured cells generated anti-Vel cell surface reactivity, confirming that SMIM1 encoded the Vel blood group antigen. A cohort of 70 Vel- individuals was found to be uniformly homozygous for a 17 nucleotide deletion in the coding sequence of SMIM1. The genetic homogeneity of the Vel- blood type, likely having a common origin, facilitated the development of two highly specific DNA-based tests for rapid Vel genotyping, which can be easily integrated into blood group genotyping platforms. These results answer a 60-year-old riddle and provide tools of immediate assistance to all clinicians involved in the care of Vel- patients.
在这里,我们报告了 Vel 血型抗原的生化和遗传基础,几十年来,Vel 血型抗原一直是一个令人困扰的谜,尤其是因为抗-Vel 经常导致严重的溶血性输血反应。从红细胞膜中生化纯化为 Vel 血型抗原的蛋白。基于质谱的从头肽测序将这种蛋白鉴定为小整合膜蛋白 1(SMIM1),这是一种以前未被描述的单次跨膜蛋白。在 Vel 培养细胞中表达 SMIM1 cDNA 产生抗-Vel 细胞表面反应性,证实 SMIM1 编码 Vel 血型抗原。在 70 名 Vel-个体中发现,SMIM1 编码序列中的 17 个核苷酸缺失在所有个体中均为纯合子。Vel-血型的遗传同质性,可能具有共同的起源,促进了两种高度特异性的基于 DNA 的 Vel 快速基因分型检测方法的发展,这些方法可以很容易地整合到血型基因分型平台中。这些结果解答了一个 60 年的谜题,并为所有参与 Vel-患者护理的临床医生提供了即时帮助的工具。