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Evidence for involvement of two naphthol reductases in the first reduction step of melanin biosynthesis pathway of Colletotrichum lagenarium

机译:有两种萘酚还原酶参与了炭疽菌黑色素生物合成途径第一步还原的证据

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Colletotrichum lagenarium is a plant pathogenic fungus, and produces melanin that is an essential factor for appressorial penetration into host tissues. The melanin biosynthesis pathway of C. lagenarium starts with pentaketide synthesis catalyzed by polyketide synthase Pks1p. We previously confirmed that the direct product of Pks1p is 1,3,6,8-tetrahydroxynaphthalene. Thus, melanin biosynthesis in this fungus requires the reduction of 1,3,6,8-tetrahydroxynaphthalene to scytalone. We made a double mutant 9141-144 from the thr1 mutant 9141 that lacks the ability to metabolize 1,3,8-trihydroxynaphthalene. The double mutant 9141-144 could metabolize neither 1,3,6,8-tetrahydroxynaphthalene nor 1,3,8-trihydroxynaphthalene. However melanin production by the double mutant was restored by THR1, indicating that Thr1p can metabolize both compounds in vivo. These results demonstrate that two enzymes, Thr1p and a deduced 1,3,6,8-tetrahydroxynaphthalene-specific reductase, are involved in the first reduction step of the melanin biosynthesis pathway of C. lagenarium.
机译:炭疽菌是一种植物致病性真菌,会产生黑色素,而黑色素是使附属物渗透到宿主组织中的重要因素。毛孢梭菌黑色素的生物合成途径始于聚酮化合物合酶Pks1p催化的戊肽合成。我们先前证实,Pks1p的直接产物是1,3,6,8-四羟基萘。因此,这种真菌中黑色素的生物合成需要将1,3,6,8-四羟基萘还原为大麦草酮。我们从thr1突变体9141制备了一个双突变体9141-144,该突变体缺乏代谢1,3,8-三羟基萘的能力。双突变体9141-144不能代谢1,3,6,8-四羟基萘或1,3,8-三羟基萘。但是,THR1恢复了双突变体产生的黑色素,表明Thr1p可以在体内代谢这两种化合物。这些结果表明,两种酶,Thr1p和一个推导的1,3,6,8-四羟基萘特异性还原酶,参与了C. lagenarium黑色素生物合成途径的第一个还原步骤。

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