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Oxygen Availability for Porphyrin Biosynthesis Enzymes Determines the Production of Protoporphyrin IX (PpIX) during Hypoxia

机译:卟啉生物合成酶的氧气可用性决定了缺氧期间原卟啉IX(PpIX)的产生

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摘要

5-Aminolevulinic acid (ALA), a precursor of porphyrin, is specifically converted to the fluorescent substance protoporphyrin IX (PpIX) in tumors to be used as a prodrug for photodynamic therapy and diagnosis. Hypoxia, a common feature of solid tumors, decreases the efficacy of ALA-based photodynamic therapy and diagnosis. This decrease results from the excretion of porphyrin precursor coproporphyrinogen III (CPgenIII), an intermediate in the biosynthesis of PpIX. However, the mechanism of CPgenIII excretion during hypoxia remains unclear. In this study, we revealed the importance of mitochondrial respiration for the production of PpIX during hypoxia. Porphyrin concentrations were estimated in human gastric cancer cell lines by HPLC. Expression levels of porphyrin biosynthesis genes were measured by qRT-PCR and immunoblotting. Blockage of porphyrin biosynthesis was an oxygen-dependent phenomenon resulting from decreased PpIX production in mitochondria under hypoxic conditions. PpIX production was increased by the inhibition of mitochondrial respiration complexes, which indicates that the enzymes of porphyrin biosynthesis compete with respiration complexes for molecular oxygen. Our results indicate that targeting the respiration complexes is a rationale for enhancing the effect of ALA-mediated treatment and diagnosis.
机译:卟啉的前体5-氨基乙酰丙酸(ALA)在肿瘤中特异性转化为荧光物质原卟啉IX(PpIX),用作光动力疗法和诊断的前药。缺氧是实体瘤的常见特征,会降低基于ALA的光动力疗法和诊断的功效。这种减少是由于卟啉前体原卟啉原原III(CPgenIII)的排泄所致,该中间体是PpIX生物合成的中间体。但是,缺氧期间CPgenIII排泄的机制仍不清楚。在这项研究中,我们揭示了在缺氧期间线粒体呼吸对于PpIX产生的重要性。通过HPLC估计人胃癌细胞系中的卟啉浓度。通过qRT-PCR和免疫印迹测定卟啉生物合成基因的表达水平。缺氧条件下线粒体中PpIX生成减少是卟啉生物合成受阻的一种氧依赖性现象。通过抑制线粒体呼吸复合物,PpIX的产量增加,这表明卟啉生物合成酶与呼吸复合物竞争分子氧。我们的结果表明,以呼吸复合物为靶点是增强ALA介导的治疗和诊断效果的基本原理。

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