Wilmotte R, Maréchal J, Morlé L, Baklouti F, Philippe N, Kastally R, Kotula L, Delaunay J, Alloisio N
CNRS URA 1171, Faculté de Médecine Grange-Blanche, Lyon, France.
J Clin Invest. 1993 May;91(5):2091-6. doi: 10.1172/JCI116432.
The alpha V/41 polymorphism of erythroid alpha-spectrin has been characterized initially by an increased susceptibility to proteolysis of the alpha IV-alpha V domain junction (Alloisio N., L. Morlé, J. Maréchal, A.-F. Roux, M.-T. Ducluzeau, D. Guetarni, B. Pothier, F. Baklouti, A. Ghanem, R. Kastally, et al. 1991. J. Clin. Invest. 87:2169-2177). Until now, it has been found associated invariably with a low expression level of the corresponding alpha chain. Among 61 chromosomes investigated in French and North African individuals or kindreds, we observed 19 chromosomes with the alpha V/41 polymorphism. With no single exception, the latter displayed a point mutation in exon 40 (Leu-->Val; CTA-->GTA) at position alpha 1857. According to the triple helical model of spectrin structure, this change accounts for the peptide maps' abnormalities. Sequencing the entire alpha V domain cDNA disclosed, in addition, a partial skipping of exon 46. At the gene level, a substitution (C-->T) was evidenced at nucleotide -12 of intron 45. This mutation appeared linked to the exon 40 mutation in 17 chromosomes, again with no single exception, among 53 examined chromosomes. We hypothesized that the lack of exon 46 would hamper the nucleation process and eventually account for the low expression feature. The present doubly mutated allele was renamed allele alpha LELY (low expression, Lyon).
红细胞α-血影蛋白的αV/41多态性最初的特征是αIV-αV结构域连接处对蛋白水解的敏感性增加(Alloisio N.,L. Morlé,J. Maréchal,A.-F. Roux,M.-T. Ducluzeau,D. Guetarni,B. Pothier,F. Baklouti,A. Ghanem,R. Kastally等,1991年。《临床研究杂志》87:2169 - 2177)。到目前为止,一直发现它总是与相应α链的低表达水平相关。在对法国人和北非个体或家族的61条染色体进行研究时,我们观察到19条具有αV/41多态性的染色体。无一例外,后者在α1857位置的外显子40中显示出一个点突变(Leu→Val;CTA→GTA)。根据血影蛋白结构的三螺旋模型,这种变化解释了肽图的异常。此外,对整个αV结构域cDNA进行测序发现外显子46部分缺失。在基因水平上,在内含子45的核苷酸-12处发现了一个替换(C→T)。在53条检测的染色体中,该突变在17条染色体上似乎与外显子40突变相关,同样无一例外。我们推测外显子46的缺失会阻碍成核过程,并最终导致低表达特征。目前这个双重突变的等位基因被重新命名为αLELY等位基因(低表达,里昂)。