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A calmodulin inhibitor W-7 influences the effect of cyclic adenosine 3 5-monophosphate signaling on ligninolytic enzyme gene expression in Phanerochaete chrysosporium

机译:钙调蛋白抑制剂W-7影响环戊腺金孢菌木质素分解酶基因表达中环腺苷35-单磷酸信号的影响

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摘要

The capacity of white-rot fungi to degrade wood lignin may be highly applicable to the development of novel bioreactor systems, but the mechanisms underlying this function are not yet fully understood. Lignin peroxidase (LiP) and manganese peroxidase (MnP), which are thought to be very important for the ligninolytic property, demonstrated increased activity in Phanerochaete chrysosporium RP-78 (FGSC #9002, ATCC MYA-4764™) cultures following exposure to 5 mM cyclic adenosine 3', 5'-monophosphate (cAMP) and 500 μM 3'-isobutyl-1-methylxanthine (IBMX), a phosphodiesterase inhibitor. Real-time reverse transcription polymerase chain reaction (RT-PCR) analysis revealed that transcription of most LiP and MnP isozyme genes was statistically significantly upregulated in the presence of the cAMP and IBMX compared to the untreated condition. However, 100 μM calmodulin (CaM) inhibitor N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide (W-7), which had insignificant effects on fungal growth and intracellular cAMP concentration, not only offset the increased activity and transcription induced by the drugs, but also decreased them to below basal levels. Like the isozyme genes, transcription of the CaM gene (cam) was also upregulated by cAMP and IBMX. These results suggest that cAMP signaling functions to increase the transcription of LiP and MnP through the induction of cam transcription.
机译:白腐真菌降解木材木质素的能力可能高度适用于新型生物反应器系统的开发,但尚未完全了解该功能的机制。木质素过氧化物酶(LiP)和锰过氧化物酶(MnP)被认为对木质素分解特性非常重要,它们在暴露于5 mM后在Phanerochaete chrysosporium RP-78(FGSC#9002,ATCC MYA-4764™)培养物中显示出增强的活性。环腺苷3',5'-单磷酸(cAMP)和500μM磷酸二酯酶抑制剂3'-异丁基-1-甲基黄嘌呤(IBMX)。实时逆转录聚合酶链反应(RT-PCR)分析显示,与未处理的条件相比,在存在cAMP和IBMX的情况下,大多数LiP和MnP同工酶基因的转录在统计学上显着上调。但是,对真菌生长和细胞内cAMP浓度影响不大的100μM钙调蛋白(CaM)抑制剂N-(6-氨基己基)-5-氯-1-萘磺酰胺(W-7),不仅抵消了活性和转录的增加由药物诱导,但也将其降至基础水平以下。像同工酶基因一样,cAMP和IBMX也上调了CaM基因(cam)的转录。这些结果表明,cAMP信号转导功能通过诱导cam转录来增加LiP和MnP的转录。

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