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在深紫青霉中,紫色素 PP-V 的产生与细胞内铵水平之间的关系。

The relationship between the violet pigment PP-V production and intracellular ammonium level in Penicillium purpurogenum.

机构信息

Graduate School of Bioresource Sciences, Nihon University, 1866 Kameino, Fujisawa, Kanagawa, 252-0880, Japan.

Depertment of Chemistry and Life Science, Nihon University, 1866 Kameino, Fujisawa, Kanagawa, 252-0880, Japan.

出版信息

AMB Express. 2016 Dec;6(1):43. doi: 10.1186/s13568-016-0215-y. Epub 2016 Jul 2.

Abstract

Penicillium purpurogenum is the fungus that produces an azaphilone pigment. However, details about the pigment biosynthesis pathway are unknown. The violet pigment PP-V is the one of the main pigments biosynthesized by this fungus. This pigment contains an amino group in a pyran ring as its core structure. We focused on this pigment and examined the relationship between intracellular ammonium concentration and pigment production using glutamine as a nitrogen source. The intracellular ammonium level decreased about 1.5-fold in conditions favoring PP-V production. Moreover, P. purpurogenum was transferred to medium in which it commonly produces the related pigment PP-O after cultivating it in the presence or absence of glutamine to investigate whether this fungus biosynthesizes PP-V using surplus ammonium in cells. Only mycelia cultured in medium containing 10 mM glutamine produced the violet pigment, and simultaneously intracellular ammonium levels decreased under this condition. From comparisons of the amount of PP-V that was secreted with quantity of surplus intracellular ammonium, it is suggested that P. purpurogenum maintains ammonium homeostasis by excreting waste ammonium as PP-V.

摘要

青霉属 purpurogenum 是产生氮杂菲酮色素的真菌。然而,关于该色素生物合成途径的细节尚不清楚。紫色素 PP-V 是该真菌合成的主要色素之一。这种色素含有吡喃环中的一个氨基作为其核心结构。我们专注于这种色素,并使用谷氨酰胺作为氮源,研究了细胞内铵浓度与色素产生之间的关系。在有利于 PP-V 产生的条件下,细胞内铵浓度降低了约 1.5 倍。此外,在有或没有谷氨酰胺的情况下培养青霉属 purpurogenum 后,将其转移到通常产生相关色素 PP-O 的培养基中,以研究该真菌是否利用细胞内多余的铵来合成 PP-V。只有在含有 10mM 谷氨酰胺的培养基中培养的菌丝体才能产生紫色色素,同时在此条件下细胞内铵浓度降低。通过比较分泌的 PP-V 量与多余细胞内铵的量,表明青霉属 purpurogenum 通过将废铵排泄为 PP-V 来维持铵稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d85a/4930434/30a3a84a498e/13568_2016_215_Fig1_HTML.jpg

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