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Role of the cysteine protease interpain A of Prevotella intermedia in breakdown and release of haem from haemoglobin

机译:中间型细肠杆菌半胱氨酸蛋白酶抑制剂A在血红蛋白分解和释放血红素中的作用

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pThe Gram-negative oral anaerobe iPrevotella intermedia/i forms an iron(III) protoporphyrin IX pigment from haemoglobin. The bacterium expresses a 90 kDa cysteine protease, InpA (interpain A), a homologue of iStreptococcus pyogenes/i streptopain (SpeB). The role of InpA in haemoglobin breakdown and haem release was investigated. At pH 7.5, InpA mediated oxidation of oxyhaemoglobin to hydroxymethaemoglobin [in which the haem iron is oxidized to the Fe(III) state and which carries OHsup?/sup as the sixth co-ordinate ligand] by limited proteolysis of globin chains as indicated by SDS/PAGE and MALDI (matrix-assisted laser-desorption ionization)–TOF (time-of-flight) analysis. Prolonged incubation at pH 7.5 did not result in further haemoglobin protein breakdown, but in the formation of a haemoglobin haemichrome (where the haem Fe atom is co-ordinated by another amino acid ligand in addition to the proximal histidine residue) resistant to degradation by InpA. InpA-mediated haem release from hydroxymethaemoglobin–agarose was minimal compared with trypsin at pH 7.5. At pH 6.0, InpA increased oxidation at a rate greater than auto-oxidation, producing aquomethaemoglobin (with water as sixth co-ordinate ligand), and resulted in its complete breakdown and haem loss. Aquomethaemoglobin proteolysis and haem release was prevented by blocking haem dissociation by ligation with azide, whereas InpA proteolysis of haem-free globin was rapid, even at pH 7.5. Both oxidation of oxyhaemoglobin and breakdown of methaemoglobin by InpA were inhibited by the cysteine protease inhibitor E-64 [itrans/i-epoxysuccinyl-L-leucylamido-(4-guanidino)butane]. In summary, we conclude that InpA may play a central role in haem acquisition by mediating oxyhaemoglobin oxidation, and by degrading aquomethaemoglobin in which haem–globin affinity is weakened under acidic conditions./p
机译:>革兰氏阴性口腔厌氧菌中间小球藻从血红蛋白形成铁(III)原卟啉IX色素。该细菌表达一种90kDa的半胱氨酸蛋白酶InpA(interpain A),它是化脓性链球菌链霉菌素(SpeB)的同系物。研究了InpA在血红蛋白分解和血红素释放中的作用。在pH值为7.5时,InpA通过有限的蛋白水解作用将氧合血红蛋白氧化为羟甲基高铁血红蛋白(其中血红素铁被氧化为Fe(III)态,并携带OH ?作为第六配位配体)。如SDS / PAGE和MALDI(基质辅助激光解吸电离)-TOF(飞行时间)分析所显示的。在pH值为7.5的条件下长时间孵育不会导致血红蛋白进一步分解,但会形成血红蛋白半色素(其中血红素Fe原子除近端组氨酸残基外还被另一个氨基酸配体配位),可抵抗降解InpA。与pH值为7.5的胰蛋白酶相比,由InpA介导的羟甲基高铁血红蛋白-琼脂糖释放的血红素极少。在pH值为6.0时,InpA以大于自氧化的速率增加氧化,产生水合高铁血红蛋白(以水作为第六配位配体),并导致其完全分解和血红素损失。水合高铁血红蛋白的蛋白水解和血红素的释放通过与叠氮化物的连接来阻止血红素的离解而得以阻止,而无血红蛋白的珠蛋白的InpA蛋白质水解也很迅速,即使在pH值为7.5时也是如此。半胱氨酸蛋白酶抑制剂E-64 [反式-环氧琥珀酰-L-亮氨酰胺基-(4-胍基)丁烷]既抑制了氧合血红蛋白的氧化作用,又破坏了InpA对血红蛋白的分解作用。总之,我们得出的结论是,InpA可能通过介导氧合血红蛋白氧化并降解其中在酸性条件下血红蛋白与血红蛋白亲和力减弱的水合高铁血红蛋白而在血红素获取中发挥重要作用。

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