非特异性磷脂酶 C3 参与拟南芥内质网胁迫耐受性的研究

IF 5.6 2区 生物学 Q1 PLANT SCIENCES Journal of Experimental Botany Pub Date : 2024-10-30 DOI:10.1093/jxb/erae303
Anh H Ngo, Artik Elisa Angkawijaya, Yuki Nakamura, Kazue Kanehara
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引用次数: 0

摘要

非特异性磷脂酶 C(NPC)是植物和细菌特有的新兴脂肪分解酶家族,在生长和应激反应中发挥着至关重要的作用。在拟南芥中发现的六份 NPC 同工酶中,NPC3 的作用至今仍难以确定。在这里,我们发现 NPC3 是一种功能性非特异性磷脂酶 C,通过合成 NPC3 的反应产物磷脂酰胆碱(PCho),参与耐受吐根霉素(TM)诱导的内质网(ER)应激。npc3 突变体对 TM 处理的敏感性降低。重组 NPC3 具有明显的磷脂酶 C 活性,能水解磷脂酰胆碱(PC)。外源 PCho 可补充 npc3 对 TM 处理的低敏感性,这表明 NPC3 催化的 PCho 生成参与了 TM 诱导的 ER 应激耐受性。NPC3 定位于ER,主要在根部表达,TM 诱导的ER胁迫进一步诱导了它的表达。耐人寻味的是,在ER胁迫下,npc3突变体的嫩枝中PCho含量明显降低。我们的研究结果表明,ER胁迫诱导NPC3产生PCho,而PCho参与了TM诱导的ER胁迫耐受。
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Non-specific phospholipase C3 is involved in endoplasmic reticulum stress tolerance in Arabidopsis.

Non-specific phospholipase C (NPC) is an emerging family of lipolytic enzymes unique to plants and bacteria that play crucial roles in growth and stress responses. Among six copies of NPC isoforms found in Arabidopsis, the role of NPC3 remains elusive to date. Here, we show that NPC3 is a functional non-specific phospholipase C involved in tolerance to tunicamycin (TM)-induced endoplasmic reticulum (ER) stress through the synthesis of phosphocholine (PCho), a reaction product of NPC3. The npc3 mutant exhibited reduced sensitivity to TM treatment. Recombinant NPC3 possessed pronounced phospholipase C activity that hydrolyses phosphatidylcholine (PC). The hyposensitivity of npc3 to TM treatment was complemented by exogenous PCho, suggesting that NPC3-catalysed PCho production is involved in TM-induced ER stress tolerance. NPC3 was localized at the ER and was predominantly expressed in the roots, and it was further induced by TM-induced ER stress. Intriguingly, npc3 mutants showed a markedly reduced PCho content in shoots under ER stress. Our results indicate that ER stress induces NPC3 to produce PCho, which is involved in TM-induced ER stress tolerance.

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来源期刊
Journal of Experimental Botany
Journal of Experimental Botany 生物-植物科学
CiteScore
12.30
自引率
4.30%
发文量
450
审稿时长
1.9 months
期刊介绍: The Journal of Experimental Botany publishes high-quality primary research and review papers in the plant sciences. These papers cover a range of disciplines from molecular and cellular physiology and biochemistry through whole plant physiology to community physiology. Full-length primary papers should contribute to our understanding of how plants develop and function, and should provide new insights into biological processes. The journal will not publish purely descriptive papers or papers that report a well-known process in a species in which the process has not been identified previously. Articles should be concise and generally limited to 10 printed pages.
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