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Stimulation of the human mitochondrial transporter ABCB10 by zinc-mesoporphrin

机译:通过锌 - 中普林刺激人体线粒体转运蛋白ABCB10

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Heme biosynthesis occurs through a series of reactions that take place within the cytoplasm and mitochondria, so intermediates need to move across these cellular compartments. However, the specific membrane transport mechanisms involved in the process are not yet identified. The ATP-binding cassette protein ABCB10 is essential for normal heme production, as knocking down this transporter in mice is embryonically lethal and accompanied by severe anemia plus oxidative damage. The role of ABCB10 is unknown, but given its location in the inner mitochondrial membrane, it has been proposed as a candidate to export either an early heme precursor or heme. Alternatively, ABCB10 might transport a molecule important for protection against oxidative damage. To help discern between these possibilities, we decided to study the effect of heme analogs, precursors, and antioxidant peptides on purified human ABCB10. Since substrate binding increases the ATP hydrolysis rate of ABC transporters, we have determined the ability of these molecules to activate purified ABCB10 reconstituted in lipid nanodiscs using ATPase measurements. Under our experimental conditions, we found that the only heme analog increasing ABCB10 ATPase activity was Zinc-mesoporphyrin. This activation of almost seventy percent was specific for ABCB10, as the ATPase activity of a negative control bacterial ABC transporter was not affected. The activation was also observed in cysteine-less ABCB10, suggesting that Zinc-mesoporphyrin’s effect did not require binding to typical heme regulatory motifs. Furthermore, our data indicate that ABCB10 was not directly activated by neither the early heme precursor delta-aminolevulinic acid nor glutathione, downsizing their relevance as putative substrates for this transporter. Although additional studies are needed to determine the physiological substrate of ABCB10, our findings reveal Zinc-mesoporphyrin as the first tool compound to directly modulate ABCB10 activity and raise the possibility that some actions of Zinc-mesoporphyrin in cellular and animal studies could be mediated by ABCB10.
机译:血红素生物合成通过在细胞质和线粒体内发生的一系列反应发生,因此中间体需要在这些细胞室中移动。然而,尚未识别过程中涉及的特定膜传输机制。 ATP结合盒式蛋白ABCB10对于正常血红素产生至关重要,因为敲击小鼠的转运蛋白是胚胎致命的,并伴有严重的贫血加上氧化损伤。 ABCB10的作用是未知的,但鉴于其位置在内部线粒体膜中,已经提出作为出口早期血红素前体或血红素的候选物。或者,ABCB10可能将分子运输,以防止氧化损伤。为了帮助辨别这些可能性,我们决定研究血红素类似物,前体和抗氧化肽对纯化人ABCB10的影响。由于衬底结合增加了ABC转运蛋白的ATP水解速率,因此我们已经确定了这些分子在使用ATP酶测量中在脂质纳米DISC中重构的纯化ABB10的能力。在我们的实验条件下,我们发现唯一的血红素模拟增加ABCB10 ATPase活性是锌 - 中卟啉。这种近70%的激活对于ABCB10特异,因为阴性对照细菌ABC转运蛋白的ATPase活性不受影响。在较不含半胱氨酸的ABCB10中也观察到活化,表明锌 - 中普罗琳的作用不需要与典型的血红素调节基序结合。此外,我们的数据表明,由于早期血红素前体δ-氨基乙酰丙烯酸和谷胱甘肽,因此不直接激活ABCB10。虽然需要额外的研究来确定ABCB10的生理基质,但我们的研究结果显示出直接调节ABCB10活性的锌 - 中卟啉作为第一工具化合物,并提高锌 - 中卟啉在细胞和动物研究中的一些作用的可能性可以通过ABCB10介导。

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