首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Arginine 383 is a crucial residue in ABCG2 biogenesis.
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Arginine 383 is a crucial residue in ABCG2 biogenesis.

机译:精氨酸383是ABCG2生物发生中的关键残基。

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摘要

ABCG2 is an ATP-binding cassette half-transporter initially identified in multidrug-resistant cancer cell lines and recently suggested to play an important role in pharmacokinetics. Here we report studies of a conserved arginine predicted to localize near the cytoplasmic side of TM1. First, we determined the effect of losing charge and bulk at this position via substitutions with glycine and alanine. The R383G mutant when transfected into HEK cells was not detectable on immunoblot or by functional assay, while the R383A mutant exhibited detectable but significantly decreased levels compared to wild-type, partial retention in the ER and altered glycosylation. Efflux of the ABCG2-substrates mitoxantrone and pheophorbide a was observed. Our experiments suggested rapid degradation of the R383A mutant by the proteasome via a kifunensine-insensitive pathway. Interestingly, overnight treatment of the R383A mutant with mitoxantrone assisted in protein maturation as evidenced by a shift to the N-glycosylated form. The R383A mutant when expressed in insect cells, though detected on the surface, had no measurable ATPase activity. In addition, substitution with the positively charged lysine resulted in significantly decreased protein expression levels in HEK cells, while retaining function. In conclusion, arginine 383 is a crucial residue for ABCG2 biogenesis, where even the most conservative mutations have a large impact.
机译:ABCG2是一种ATP结合盒半转运蛋白,最初在多药耐药性癌细胞系中发现,最近被认为在药代动力学中起重要作用。在这里,我们报告保守精氨酸的研究,预测其位于TM1的细胞质侧附近。首先,我们确定了通过用甘氨酸和丙氨酸取代在该位置失去电荷和体积的影响。将R383G突变体转染入HEK细胞后,无法通过免疫印迹或功能测定法检测到,而与野生型,ER中的部分保留和糖基化改变相比,R383A突变体显示出可检测但显着降低的水平。观察到ABCG2底物米托蒽醌和脱镁叶绿酸a的流出。我们的实验表明,蛋白酶体可通过对Kifunensine不敏感的途径快速降解R383A突变体。有趣的是,用米托蒽醌对R383A突变体进行的过夜处理有助于蛋白质的成熟,这一点可以证明是向N-糖基化形式的转变。 R383A突变体在昆虫细胞中表达时,尽管在表面被检测到,却没有可测量的ATPase活性。另外,用带正电的赖氨酸替代导致HEK细胞中蛋白质表达水平显着降低,同时保持功能。总之,精氨酸383是ABCG2生物发生的关键残基,即使最保守的突变也有很大影响。

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