首页> 外文期刊>Archives of Microbiology >The essential fatty acid myristate causes severe growth retardation in Hpelo disruptants of the yeast Hansenula polymorpha
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The essential fatty acid myristate causes severe growth retardation in Hpelo disruptants of the yeast Hansenula polymorpha

机译:必需脂肪酸肉豆蔻酸酯导致酵母多形汉逊酵母的Hpelo破坏剂严重生长迟缓

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摘要

Myristate (C14:0) is an essential multi-functional fatty acid in a variety of organisms. We found that C14:0, but not other fatty acids, causes severe growth retardation in Hpelo1Δ and Hpelo2Δ mutants of the yeast Hansenula polymorpha, defective in elongation of very long-chain fatty acids. While transcription of HpELO1 and HpELO2 is transiently increased by C14:0, this was not found to be responsible for the growth retardation. Transcription of HpFAS1 and HpFAS2 encoding fatty acid synthase is repressed by C14:0, but this repression was also not found to be responsible for growth retardation. A screen for suppressors that resulted in restored growth of the Hpelo1Δ disruptant on media containing C14:0 identified two types of suppressors. One exhibited a defect in C14:0 uptake while the other did not. Molecular genetic and genomic analysis of these suppressor mutations is anticipated to shed new light on the processes of fatty acid transport and the crucial role of C14:0 in the growth of eukaryotic organisms.
机译:肉豆蔻酸酯(C14:0)是多种生物中必不可少的多功能脂肪酸。我们发现,C14:0,而不是其他脂肪酸,在酵母多形汉逊酵母的Hpelo1Δ和Hpelo2Δ突变体中引起严重的生长迟缓,这在长链脂肪酸的延长中是有缺陷的。虽然HpELO1和HpELO2的转录通过C14:0瞬时增加,但未发现这是造成生长迟缓的原因。 C14:0抑制了编码脂肪酸合酶的HpFAS1和HpFAS2的转录,但也没有发现这种抑制作用是造成生长迟缓的原因。筛选抑制剂导致Hpelo1Δ破坏剂在含有C14:0的培养基上恢复生长,确定了两种抑制剂。一个显示出C14:0摄取缺陷,而另一个则没有。这些抑制剂突变的分子遗传学和基因组学分析有望为脂肪酸转运过程以及C14:0在真核生物生长中的关键作用提供新的思路。

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