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18-Dihydroxynaphthalene (DHN)-Melanin Biosynthesis Inhibitors Increase Erythritol Production in Torula corallina and DHN-Melanin Inhibits Erythrose Reductase

机译:18-二羟基萘(DHN)-黑色素生物合成抑制剂可增加珊瑚果中的赤藓糖醇产量而DHN-黑色素可抑制赤藓糖还原酶

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摘要

The yeast Torula corallina is a strong erythritol producer that is used in the industrial production of erythritol. However, melanin accumulation during culture represents a serious problem for the purification of erythritol from the fermentation broth. Melanin biosynthesis inhibitors such as 3,4-dihydroxyphenylalanine and 1,8-dihydroxynaphthalene (DHN)-melanin inhibitors were added to the T. corallina cultures. Only the DHN-melanin inhibitors showed an effect on melanin production, which suggests that the melanin formed during the culturing of T. corallina is derived from DHN. This finding was confirmed by the detection of a shunt product of the pentaketide pathway, flaviolin, and elemental analysis. Among the DHN-melanin inhibitors, tricyclazole was the most effective. Supplementation with tricyclazole enhanced the production of erythritol while significantly inhibiting the production of DHN-melanin and DHN-melanin biosynthetic enzymes, such as trihydroxynaphthalene reductase. The erythrose reductase from T. corallina was purified to homogeneity by ion-exchange and affinity chromatography. Purified erythrose reductase was significantly inhibited in vitro in a noncompetitive manner by elevated levels of DHN-melanin. In contrast, the level of erythrose reductase activity was unaffected by increasing concentrations of tricyclazole. These results suggest that supplemental tricyclazole reduces the production of DHN-melanin, which may lead to a reduction in the inhibition of erythrose reductase and a higher yield of erythritol. This is the first report to demonstrate that melanin biosynthesis inhibitors increase the production of a sugar alcohol in T. corallina.
机译:酵母Torula Corallina是一种强大的赤藓糖醇生产商,用于工业生产赤藓糖醇。然而,培养期间黑色素的积累代表了从发酵液中纯化赤藓糖醇的严重问题。将黑色素生物合成抑制剂(例如3,4-二羟基苯丙氨酸和1,8-二羟基萘(DHN)-黑色素抑制剂)添加到T. Corallina培养物中。仅DHN-黑色素抑制剂显示对黑色素产生的作用,这表明在T.corallina的培养过程中形成的黑色素源自DHN。通过检测五肽肽途径,黄酮和元素分析的分流产物,证实了这一发现。在DHN-黑色素抑制剂中,三环唑是最有效的。补充三环唑可提高赤藓糖醇的产量,同时显着抑制DHN-黑色素和DHN-黑色素生物合成酶(如三羟基萘还原酶)的产生。通过离子交换和亲和层析将来自珊瑚虫的赤藓糖还原酶纯化至均质。 DHN-黑色素水平升高,在体外以非竞争性方式显着抑制了纯化的赤藓糖还原酶。相反,赤藓糖还原酶活性的水平不受三环唑浓度增加的影响。这些结果表明,补充三环唑可减少DHN-黑色素的产生,这可能会导致对赤藓糖还原酶的抑制作用降低以及赤藓糖醇的产率更高。这是第一个证明黑色素生物合成抑制剂增加T.corallina中糖醇产量的报告。

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