Jarolim P, Murray J L, Rubin H L, Taylor W M, Prchal J T, Ballas S K, Snyder L M, Chrobak L, Melrose W D, Brabec V, Palek J
Department of Biomedical Research, St Elizabeth's Medical Center, Tufts University School of Medicine, Boston, MA, USA.
Blood. 1996 Dec 1;88(11):4366-74.
Hereditary spherocytosis (HS) is a common hemolytic anemia of variable clinical expression. Pathogenesis of HS has been associated with defects of several red cell membrane proteins including erythroid band 3. We have studied erythrocyte membrane proteins in 166 families with autosomal dominant HS. We have detected relative deficiency of band 3 in 38 kindred (23%). Band 3 deficiency was invariably associated with mild autosomal dominant spherocytosis and with the presence of pincered red cells in the peripheral blood smears of unsplenectomized patients. We hypothesized that this phenotype is caused by band 3 gene defects. Therefore, we screened band 3 DNA from these 38 kindred for single strand conformational polymorphisms (SSCP). In addition to five mutations detected previously by SSCP screening of cDNA, we detected 13 new band 3 gene mutations in 14 kindred coinherited with HS. These novel mutations consisted of two distinct subsets. The first subset included seven nonsense and frameshift mutations that were all associated with the absence of the mutant mRNA allele from reticulocyte RNA, implicating decreased production and/or stability of mutant mRNA as the cause of decreased band 3 synthesis. The second group included five substitutions of highly conserved amino acids and one in-frame deletion. These six mutations were associated with the presence of comparable levels of normal and mutant band 3 mRNA. We suggest that these mutations interfere with band 3 biosynthesis leading thus to the decreased accumulation of the mutant band 3 allele in the plasma membrane.
遗传性球形红细胞增多症(HS)是一种临床表现多样的常见溶血性贫血。HS的发病机制与包括红细胞带3在内的几种红细胞膜蛋白缺陷有关。我们研究了166个常染色体显性遗传性球形红细胞增多症家族的红细胞膜蛋白。我们在38个家族(23%)中检测到带3相对缺乏。带3缺乏总是与轻度常染色体显性球形红细胞增多症以及未行脾切除术患者外周血涂片出现钳状红细胞有关。我们推测这种表型是由带3基因缺陷引起的。因此,我们对这38个家族的带3 DNA进行了单链构象多态性(SSCP)筛查。除了先前通过cDNA的SSCP筛查检测到的5个突变外,我们在14个与HS共遗传的家族中检测到13个新的带3基因突变。这些新突变由两个不同的亚组组成。第一个亚组包括7个无义突变和移码突变,这些突变均与网织红细胞RNA中突变mRNA等位基因的缺失有关,这意味着突变mRNA产量降低和/或稳定性降低是带3合成减少的原因。第二组包括5个高度保守氨基酸的替换和1个框内缺失。这6个突变与正常和突变带3 mRNA水平相当有关。我们认为这些突变干扰了带3的生物合成,从而导致突变带3等位基因在质膜中的积累减少。