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首页> 外文期刊>Applied and Environmental Microbiology >Lignin Peroxidase Isozymes from Phanerochaete chrysosporium Can Be Enzymatically Dephosphorylated.
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Lignin Peroxidase Isozymes from Phanerochaete chrysosporium Can Be Enzymatically Dephosphorylated.

机译:Phanerochaete chrysosporium的木质素过氧化物酶同工酶可以被酶法去磷酸化。

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摘要

The extracellular lignin peroxidase (LIP) protein profile of the fungus Phanerochaete chrysosporium, grown in nonimmersed liquid culture under conditions of excess nitrogen, changed markedly with culture age. At peak LIP activity (day 4), the heme-protein profile in the extracellular fluid, analyzed by anion-exchange high-pressure liquid chromatography, was characterized by a predominance of the LIP isozymes H1 and H2, small amounts of H6 and H8, and other minor peaks, designated Ha and Hb. On day 5, the level of H1 increased and it became the dominant isozyme, with a corresponding decrease in the level of H2. Moreover, the relative levels of H6 and H8 decreased with corresponding increases in Ha and Hb levels. This change in LIP profile occurred extracellularly and resulted from the enzymatic dephosphorylation of LIP isozymes. An enzymatic fraction responsible for LIP isozyme dephosphorylation, termed LIP dephosphorylating (LpD) fraction, was partially purified from the culture fluid. Incubation of the LpD fraction with (sup32)P-labeled H2, H6, H8, and H10 isozymes separated from nitrogen-limited cultures resulted in the formation of the dephosphorylated isozymes H1, Ha, Hb, and Hc, respectively. Dephosphorylation did not significantly change the catalytic properties of the LIP isozymes with veratryl alcohol as a substrate. LIP dephosphorylation is therefore suggested to be a posttranslational modification process catalyzed extracellularly by the LpD activity.
机译:Phanerochaete chrysosporium真菌的细胞外木质素过氧化物酶(LIP)蛋白谱在过量氮条件下在非浸没液体培养中生长,随培养年龄而显着变化。在LIP活性达到峰值(第4天)时,通过阴离子交换高压液相色谱分析了细胞外液中的血红素蛋白谱,其特征是LIP同工酶H1和H2占优势,少量H6和H8以及其他次要峰,称为Ha和Hb。在第5天,H1的水平升高,成为主要的同工酶,H2的水平相应降低。此外,H6和H8的相对水平随着Ha和Hb水平的相应增加而降低。 LIP谱的这种变化发生在细胞外,是LIP同工酶的酶促去磷酸化作用所致。从培养液中部分纯化了负责LIP同工酶脱磷酸作用的酶促级分,称为LIP去磷酸化(LpD)级分。 LpD部分与(sup32)P标记的H2,H6,H8和H10同工酶从氮限制培养物中分离培养后,分别形成了去磷酸化的同工酶H1,Ha,Hb和Hc。以藜芦醇为底物,去磷酸化不会显着改变LIP同工酶的催化性能。因此,LIP去磷酸化被认为是LpD活性在细胞外催化的翻译后修饰过程。

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