Salomao Marcela, Chen Ke, Villalobos Jonathan, Mohandas Narla, An Xiuli, Chasis Joel Anne
The Red Cell Physiology Laboratory, The New York Blood Center, New York, NY, USA.
Blood. 2010 Jul 15;116(2):267-9. doi: 10.1182/blood-2010-02-264127. Epub 2010 Mar 25.
During erythroblast enucleation, membrane proteins distribute between extruded nuclei and reticulocytes. In hereditary spherocytosis (HS) and hereditary elliptocytosis (HE), deficiencies of membrane proteins, in addition to those encoded by the mutant gene, occur. Elliptocytes, resulting from protein 4.1R gene mutations, lack not only 4.1R but also glycophorin C, which links the cytoskeleton and bilayer. In HS resulting from ankyrin-1 mutations, band 3, Rh-associated antigen, and glycophorin A are deficient. The current study was undertaken to explore whether aberrant protein sorting, during enucleation, creates these membrane-spanning protein deficiencies. We found that although glycophorin C sorts to reticulocytes normally, it distributes to nuclei in 4.1R-deficient HE cells. Further, glycophorin A and Rh-associated antigen, which normally partition predominantly to reticulocytes, distribute to both nuclei and reticulocytes in an ankyrin-1-deficient murine model of HS. We conclude that aberrant protein sorting is one mechanistic basis for protein deficiencies in HE and HS.
在成红细胞去核过程中,膜蛋白在挤出的细胞核和网织红细胞之间分布。在遗传性球形红细胞增多症(HS)和遗传性椭圆形红细胞增多症(HE)中,除了突变基因编码的膜蛋白外,还会出现膜蛋白缺乏的情况。由蛋白4.1R基因突变导致的椭圆形红细胞不仅缺乏4.1R,还缺乏连接细胞骨架和双层膜的血型糖蛋白C。在由锚蛋白-1突变引起的HS中,带3、Rh相关抗原和血型糖蛋白A缺乏。本研究旨在探讨去核过程中异常的蛋白质分选是否会导致这些跨膜蛋白缺乏。我们发现,虽然血型糖蛋白C正常分选至网织红细胞,但在缺乏4.1R的HE细胞中,它会分布到细胞核中。此外,通常主要分配到网织红细胞的血型糖蛋白A和Rh相关抗原,在缺乏锚蛋白-1的HS小鼠模型中会同时分布到细胞核和网织红细胞中。我们得出结论,异常的蛋白质分选是HE和HS中蛋白质缺乏的一个机制基础。