首页> 外文期刊>American Journal of Hematology >Targeted deletion of the gamma-adducin gene (Add3) in mice reveals differences in alpha-adducin interactions in erythroid and nonerythroid cells.
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Targeted deletion of the gamma-adducin gene (Add3) in mice reveals differences in alpha-adducin interactions in erythroid and nonerythroid cells.

机译:有针对性地删除小鼠中的gamma-adducin基因(Add3),揭示了红系和非红系细胞中α-adducin相互作用的差异。

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In red blood cells (RBCs) adducin heterotetramers localize to the spectrin-actin junction of the peripheral membrane skeleton. We previously reported that deletion of beta-adducin results in osmotically fragile, microcytic RBCs and a phenotype of hereditary spherocytosis (HS). Notably, alpha-adducin was significantly reduced, while gamma-adducin, normally present in limited amounts, was increased approximately 5-fold, suggesting that alpha-adducin requires a heterologous binding partner for stability and function, and that gamma-adducin can partially substitute for the absence of beta-adducin. To test these assumptions we generated gamma-adducin null mice. gamma-adducin null RBCs appear normal on Wright's stained peripheral blood smears and by scanning electron microscopy. All membrane skeleton proteins examined are present in normal amounts, and all hematological parameters measured are normal. Despite a loss of approximately 70% of alpha-adducin in gamma-adducin null platelets, no bleeding defect is observed and platelet structure appears normal. Moreover, systemic blood pressure and pulse are normal in gamma-adducin null mice. gamma- and beta-adducin null mice were intercrossed to generate double null mice. Loss of gamma-adducin does not exacerbate the beta-adducin null HS phenotype although the amount alpha-adducin is reduced to barely detectable levels. The stability of alpha-adducin in the absence of a heterologous binding partner varies considerably in various tissues. The amount of alpha-adducin is modestly reduced ( approximately 15%) in the kidney, while in the spleen and brain is reduced by approximately 50% with the loss of a heterologous beta- or gamma-adducin binding partner. These results suggest that the structural properties of adducin differ significantly between erythroid and various nonerythroid cell types.
机译:在红细胞(RBC)中,adducin异四聚体位于外周膜骨架的血影蛋白-肌动蛋白连接处。我们以前曾报道过,β-adducin的缺失导致渗透性脆性,微核红细胞和遗传性球囊细胞增多症(HS)的表型。值得注意的是,α-adducin显着降低,而通常以有限量存在的gamma-adducin增加了约5倍,这表明α-adducin需要异源结合伴侣才能实现稳定性和功能,γ-adducin可以部分替代因为没有β-adducin。为了检验这些假设,我们生成了γ-adducinnull小鼠。赖特氏染色的外周血涂片和通过扫描电子显微镜观察,γ-adducin无效的RBC正常。所有检查的膜骨架蛋白均以正常量存在,并且所测得的所有血液学参数均为正常。尽管在γ-adducin无效血小板中丢失了约70%的α-adducin,但未观察到出血缺陷,并且血小板结构看起来正常。此外,γ-内啡肽无效小鼠的全身血压和脉搏正常。将γ-和β-adducin无效小鼠交叉杂交以产生双重无效小鼠。尽管α-adducin的量减少到几乎无法检测到的水平,但γ-adducin的丧失并不会加剧β-adducin的无效HS表型。在没有异源结合伴侣的情况下,α-adducin的稳定性在各种组织中差异很大。在肾脏中,α-adducin的量会适度减少(约15%),而在脾脏和大脑中,由于异源β-或gamma-adducin结合伴侣的丢失,约减少50%。这些结果表明,在类红细胞和各种非类红细胞类型之间,adducin的结构性质存在显着差异。

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