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Phosphorylation by protein kinase CK2 modulates the activity of the ATP-binding cassette A1 (ABCA1) transporter.

机译:蛋白激酶CK2的磷酸化调节aTp结合盒a1(aBCa1)转运蛋白的活性。

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摘要

In a previous characterization of the ABCA subfamily of the ATP-binding cassette (ABC) transporters, we identified potential protein kinase 2 (CK2) phosphorylation sites, which are conserved in eukaryotic and prokaryotic members of the ABCA transporters (Peelman, F., Labeur, C., Vanloo, B., Roosbeek, S., Devaud, C., Duverger, N., Denefle, P., Rosier, M., Vandekerckhove, J., and Rosseneu, M. ( 2003) J. Mol. Biol. 325, 259 - 274). These phosphorylation residues are located in the conserved cytoplamic R1 and R2 domains, downstream of the nucleotide binding domains NBD1 and NBD2. To study the possible regulation of the ABCA1 transporter by CK2, we expressed the recombinant cytoplasmic domains of ABCA1, NBD1 + R1 and NBD2 + R2. We demonstrated that in vitro ABCA1 NBD1 + R1, and not NBD2 + R2, is phosphorylated by CK2, and we identified Thr-1242, Thr-1243, and Ser-1255 as the phosphorylated residues in the R1 domain by mass spectrometry. We further investigated the functional significance of the threonine and serine phosphorylation sites in NBD1 by site-directed mutagenesis of the entire ABCA1 followed by transfection into Hek-293 Tet-Off cells. The ABCA1 flippase activity, apolipoprotein AI and AII binding, and cellular phospholipid and cholesterol efflux were enhanced by mutations preventing CK2 phosphorylation of the threonine and serine residues. This was confirmed by the effect of specific protein kinase CK2 inhibitors upon the activity of wild type and mutant ABCA1 in transfected Hek-293 Tet-Off cells. The activities of the mutants mimicking threonine phosphorylation were close to that of wild type ABCA1. Our data, therefore, suggest that besides protein kinase A and C, protein kinase CK2 might play an important role in vivo in regulating the function and transport activity of ABCA1 and possibly of other members of the ABCA subfamily.
机译:在ATP结合盒(ABC)转运蛋白的ABCA亚家族的先前表征中,我们鉴定了潜在的蛋白激酶2(CK2)磷酸化位点,在ABCA转运蛋白的真核和原核成员中保守(Peelman,F.,Labeur C.,Vanloo B.,Roosbeek S.,Devaud C.,Duverger N.,Denefle P.,Rosier M.,Vandekerckhove J.和Rosseneu M.(2003年)J. Mol (Biol.325,259-274)。这些磷酸化残基位于保守的细胞质R1和R2结构域中,在核苷酸结合结构域NBD1和NBD2的下游。为了研究CK2对ABCA1转运蛋白的可能调控,我们表达了ABCA1,NBD1 + R1和NBD2 + R2的重组胞质结构域。我们证明了体外ABCA1 NBD1 + R1,而不是NBD2 + R2,被CK2磷酸化,并且我们通过质谱鉴定了Thr-1242,Thr-1243和Ser-1255为R1域中的磷酸化残基。我们通过整个ABCA1的定点诱变,然后转染到Hek-293 Tet-Off细胞中,进一步研究了NBD1中苏氨酸和丝氨酸磷酸化位点的功能意义。阻止苏氨酸和丝氨酸残基的CK2磷酸化的突变增强了ABCA1的翻转酶活性,载脂蛋白AI和AII的结合以及细胞磷脂和胆固醇的流出。特定蛋白激酶CK2抑制剂对转染的Hek-293 Tet-Off细胞中野生型和突变ABCA1活性的影响证实了这一点。模拟苏氨酸磷酸化的突变体的活性接近野生型ABCA1。因此,我们的数据表明,除了蛋白激酶A和C,蛋白激酶CK2在体内可能还起着重要的作用,调节ABCA1以及ABCA亚家族其他成员的功能和转运活性。

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