三个连续的细胞质糖解酶调节自流
Du-Hwa Lee1,2, Ilyeong Choi2, Seung Jun Park2
1Gregor Mendel Institute (GMI), Austrian Academy of Sciences, Vienna BioCenter (VBC), Dr. Bohr-Gasse 3, 1030 Vienna, Austria.
Plant physiology
|August 4, 2023
概括
酸加工酶 (TGP) 在阿拉比多普西斯中负面调节自. 耗尽这些酶会触发自并影响幼苗的生长,揭示了糖代谢和这一重要的循环过程之间的联系.
科学领域:
- 植物分子生物学 植物分子生物学
- 细胞代谢的细胞代谢.
- 自的研究研究自.
背景情况:
- 自是真核生物生存的关键细胞循环过程,特别是在营养稀缺的情况下.
- 代谢酶协调营养诱导的代谢流变化,这表明代谢和自调节之间存在联系.
研究的目的:
- 为了确定碳代谢基因,影响Arabidopsis的自性.
- 研究糖解和卡尔文-本森循环酶在调节自中的作用.
主要方法:
- 病毒诱导的基因沉默 (VIGS) 查Arabidopsis thaliana.的45个关键代谢基因.
- 对自诱导,ATG1激酶活性和蛋白质相互作用的分析.
- 通过交叉突变物进行遗传分析.
主要成果:
- 三种细胞核糖解酶 (三-酸盐-异构酶,甘甲基-3-酸盐脱酶,糖酸盐激酶),统称为TGP,被确定为自的负调节剂.
- 减少TGP酶导致自发自和增加ATG1激酶活性.
- TGP酶与ATG101相互作用,ATG1激酶综合体的组成部分,TGP突变体的表型通过与ATG101突变体交叉来挽救.
结论:
- TGP酶在ATG1复合体上游起作用,以负控制自.
- TGP酶具有战略位置,可以监测光合作用糖的流量,调节自,影响幼苗的发育.
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