首页> 外文期刊>Applied Microbiology >Electron Donor Cytochrome b5 Is Required for Hyphal Tip Accumulation of Sterol-Rich Plasma Membrane Domains and Membrane Fluidity in Aspergillus fumigatus
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Electron Donor Cytochrome b5 Is Required for Hyphal Tip Accumulation of Sterol-Rich Plasma Membrane Domains and Membrane Fluidity in Aspergillus fumigatus

机译:电子给体细胞色素B5是菌丝富硅膜膜结构型和烟草膜膜结构型和膜流动性所必需的

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The electron donor cytochrome b _(5) (CybE/Cyb5) fuels the activity of the ergosterol biosynthesis-related P450 enzymes (P450s) by providing electrons to P450s to promote ergosterol biosynthesis. Previous studies reported that a lack of Aspergillus fumigatus CybE reduces the proportion of ergosterol in total sterols and induces severe growth defects. However, the molecular characteristics of CybE and the underlying mechanism for CybE maintaining A. fumigatus growth remain poorly understood. Here, we found that the C terminus of CybE, with two transmembrane domains, is located at the endoplasmic reticulum. Therefore, a strain lacking the C terminus of CybE shows a defective growth phenotype similar to that of a cybE deletion strain. Notably, cybE deletion reduced the accumulation of the sterol-rich plasma membrane domains (SRDs; the assembly platform of polarity factors/cell end markers and growth machinery) in hyphal tips and decreased membrane fluidity, which corresponds to tardiness of hyphal extension and hypersensitivity to low temperature in the cybE deletion mutant. Additionally, overexpressing another electron donor, a heme-independent P450 reductase (cytochrome P450 reductase [CPR]), significantly rescued growth defects and recovered SRD accumulation in the cybE deletion mutant almost to the wild-type level, suggesting that CybE maintaining the growth and deposition of SRDs in hyphal tips is attributed to its nature as an electron donor. Protein pulldown assays revealed that CybE probably participates in the metabolism and transfer of lipids, construction of cytoskeleton, and mitochondria-associated energy metabolism to maintain the SRD accumulation in hyphal tips, membrane fluidity, and hyphal extension. The findings in this study give a hint that inhibition of CybE may be an effective strategy for resisting the infection of the human pathogen A. fumigatus .IMPORTANCE Investigating the knowledge of the growth regulation in the human opportunistic pathogen Aspergillus fumigatus is conducive to designing a new antifungal approach. The electron donor cytochrome b _(5) (CybE) plays a crucial role in maintaining the normal growth of A. fumigatus ; however, the potential mechanism remains elusive. Here, we characterized the molecular features of CybE and found that the C terminus with two transmembrane domains is required for its endoplasmic reticulum (ER) localization and functions. In addition, we demonstrated that CprA, an electron donor-heme-independent P450 reductase, provides a reciprocal function for the missing cytochrome b _(5) protein-CybE in A. fumigatus . CybE maintains the normal growth probably via supporting two crucial physiological processes, the sterol-rich plasma membrane domain (SRD) accumulation in hyphal tips and membrane fluidity. Therefore, our findings reveal the mechanisms underlying the regulatory effect of CybE on A. fumigatus growth and indicate that inhibition of CybE might be an effective approach for alleviating A. fumigatus infection.
机译:电子给体细胞色素B _(5)(CYBE / CYB5)通过向P450提供电子至P450来促进Ergosterol生物合成相关的P450酶(P450s)的活性以促进Ergosterol生物合成。以前的研究报道说,缺乏曲霉菌落Cybe降低了总甾醇中Ergoster索的比例,并诱导严重生长缺陷。然而,Cybe的分子特征和Cybe保持A. Fumigatus生长的潜在机制仍然明白。在这里,我们发现,具有两个跨膜结构域的Cybe的C末端位于内质网。因此,缺乏CyBE末端的菌株显示出类似于CybE缺失菌株的生长表型。值得注意的是,Cybe缺失降低了酸甾醇血浆膜结构域的积累(SRD;极性因子/细胞端标记和生长机械的装配平台)在亚腿尖端和膜流动性下降,这对应于悬垂延伸和超敏反应的迟钝Cybe缺失突变体中的低温。另外,过表达另一个电子供体,血红素独立的P450还原酶(细胞色素P450还原酶[CPR]),显着抢救生长缺陷,在Cybe缺失突变体中恢复的SRD积累几乎到了野生型水平,表明CybE保持了增长和在悬垂提示中沉积SRD的沉积归因于其作为电子给体的性质。蛋白质下拉测定揭示了Cybe可能参与脂质的代谢和转移,细胞骨架和线粒体相关能量代谢,以维持悬垂尖端,膜流动性和悬垂延伸的SRD积累。本研究中的发现暗示Cybe的抑制可能是抵抗人病原体A. Fumigatus感染的有效策略.IMPortance调查人类机会病原体的增长调控的知识有利于设计新的抗真空方法。电子给体细胞色素B _(5)(Cybe)在维持A. fumigatus的正常生长方面起着至关重要的作用;但是,潜在机制仍然难以捉摸。在此,我们表征了Cybe的分子特征,发现其内质网(ER)定位和功能需要具有两个跨膜结构域的C末端。此外,我们证明CPRA是一种电子供体 - 血红素的P450还原酶,为A. fumigatus中缺失的细胞色素B _(5)蛋白-Cybe提供倒数函数。 Cybe保持正常增长,可能通过支持两个重要的生理过程,富含甾醇的血浆膜结构域(SRD)积聚在悬垂尖端和膜流动中。因此,我们的研究结果揭示了Cybe对A. fumigatus生长的调节作用的机制,表明Cybe的抑制可能是缓解A. fumigatus感染的有效方法。

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