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锰过氧化物酶基因家族调控的逆转录聚合酶链反应分析

Reverse transcription-PCR analysis of the regulation of the manganese peroxidase gene family.

作者信息

Gettemy J M, Ma B, Alic M, Gold M H

机构信息

Department of Biochemistry and Molecular Biology, Oregon Graduate Institute of Science and Technology, Portland 97291-1000, USA.

出版信息

Appl Environ Microbiol. 1998 Feb;64(2):569-74. doi: 10.1128/AEM.64.2.569-574.1998.

Abstract

Manganese peroxidase (MnP) gene expression in the lignin-degrading fungus Phanerochaete chrysosporium is regulated by nutrient nitrogen levels and by Mn(II), the substrate for the enzyme, as well as by heat shock and other factors. Reverse transcription-PCR (RT-PCR) of total RNA can distinguish the mRNAs of each of the three sequenced P. chrysosporium mnp genes, i.e., mnp1, mnp2, and mnp3. Quantitative RT-PCR demonstrates that each of the three transcripts is present at a similar low basal level in nitrogen-sufficient cultures, with or without Mn, and in nitrogen-limited cultures lacking Mn. However, in 5-day-old, nitrogen-limited, stationary cultures supplemented with 180 microM Mn, the levels of the mnp1 and mnp2 transcripts increased approximately 100- and 1,700-fold, respectively, over basal levels. In contrast, under these conditions, the level of the mnp3 transcript did not increase significantly over the basal level. Quantitative RT-PCR of total RNA extracted from nitrogen-deficient, Mn-supplemented cultures on days 2 through 7 demonstrates that whereas the mnp1 transcript was present at relatively low levels on days 3 through 7, the mnp2 transcript level peaked on day 5 and the mnp3 transcript level peaked on day 3. Comparison of total RNA extracted on day 5 from nitrogen-deficient, Mn-supplemented stationary and agitated cultures indicates that in stationary cultures, mnp2 was the major expressed mnp gene, whereas in large agitated cultures, mnp1 was the major expressed mnp gene.

摘要

木质素降解真菌黄孢原毛平革菌中锰过氧化物酶(MnP)基因的表达受营养氮水平、该酶的底物Mn(II)以及热休克和其他因素的调控。对总RNA进行逆转录聚合酶链反应(RT-PCR)可以区分黄孢原毛平革菌三个已测序的mnp基因(即mnp1、mnp2和mnp3)各自的mRNA。定量RT-PCR表明,在氮充足的培养物中,无论有无Mn,以及在缺乏Mn的氮限制培养物中,这三种转录本均以相似的低基础水平存在。然而,在添加了180μM Mn的5日龄氮限制静止培养物中,mnp1和mnp2转录本的水平分别比基础水平增加了约100倍和1700倍。相比之下,在这些条件下,mnp3转录本的水平没有比基础水平显著增加。对第2天至第7天从缺氮、添加Mn的培养物中提取的总RNA进行定量RT-PCR表明,虽然mnp1转录本在第3天至第7天以相对较低的水平存在,但mnp2转录本水平在第5天达到峰值,mnp3转录本水平在第3天达到峰值。对第5天从缺氮、添加Mn的静止和搅拌培养物中提取的总RNA进行比较表明,在静止培养物中,mnp2是主要表达的mnp基因,而在大型搅拌培养物中,mnp1是主要表达的mnp基因。

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