Bogusławska Dżamila M, Kraszewski Sebastian, Skulski Michał, Potoczek Stanisław, Kuliczkowski Kazimierz, Sikorski Aleksander F
Department of Biotechnology, Institute of Biological Sciences, University of Zielona Góra, Prof. Szafrana St. 1, 65-516 Zielona Góra, Poland.
Department of Biomedical Engineering, Wroclaw University of Science and Technology, Plac Grunwaldzki 13 (D-1), 50-377 Wroclaw, Poland.
Biomedicines. 2023 Mar 5;11(3):784. doi: 10.3390/biomedicines11030784.
Hereditary spherocytosis (HS) refers to the group of the most frequently occurring non-immune hereditary hemolytic anemia in people of Caucasian central or northern European ancestry. HS is mainly associated with pathogenic variants of genes encoding defects in five membrane proteins, including anion exchanger 1 encoded by the gene. In this study, in a family affected with HS, we identified a hitherto unreported AE1 defect, variant p.G720W. The result of it is most likely the HS phenotype. Molecular dynamics simulation study of the AE1 transmembrane domain may indicate reasonable changes in AE1 domain structure, i.e., significant displacement of the tryptophan residue towards the membrane surface connected with possible changes in AE1 function. The WES analysis verified by classical sequencing in conjunction with biochemical analysis and molecular simulation studies shed light on the molecular mechanism underlying this case of hereditary spherocytosis, for which the newly discovered AE1 variant p.G720W seems crucial.
遗传性球形红细胞增多症(HS)是指在中欧或北欧白种人中最常见的非免疫性遗传性溶血性贫血。HS主要与编码五种膜蛋白缺陷的基因的致病变异有关,包括由该基因编码的阴离子交换蛋白1。在本研究中,在一个受HS影响的家族中,我们鉴定出一种迄今未报道的AE1缺陷,即p.G720W变体。其结果很可能是HS表型。对AE1跨膜结构域的分子动力学模拟研究可能表明AE1结构域结构发生了合理变化,即色氨酸残基向膜表面的显著位移,这可能与AE1功能的变化有关。通过经典测序结合生化分析和分子模拟研究验证的全外显子组测序(WES)揭示了这例遗传性球形红细胞增多症的分子机制,新发现的AE1变体p.G720W似乎在其中起着关键作用。