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番茄磷饥饿诱导代谢:III. 养分胁迫下蛋白质分泌的变化。

Phosphate Starvation Inducible Metabolism in Lycopersicon esculentum: III. Changes in Protein Secretion under Nutrient Stress.

机构信息

Department of Plant Sciences, University of Arizona, Tucson, Arizona 85721.

出版信息

Plant Physiol. 1989 Sep;91(1):175-82. doi: 10.1104/pp.91.1.175.

Abstract

Phosphate starvation increased the secretion of at least six proteins by suspension cultured tomato (Lycopersicon esculentum L. and L. pennellii) cells. Cells exhibited a biphasic response to phosphate (Pi) starvation. The early phase involved enhanced secretion of three proteins in response to transfer to a Pi-depleted media, while biomass accumulation continued at the same rate as in the Pi-sufficient cells. Severe starvation, defined as inhibition of biomass accumulation, induced enhanced secretion of three additional proteins. After sodium dodecyl sulfate-polyacrylamide gel electrophoresis, media proteins were immunoblotted with antibodies reacting specifically to oligosaccharides processed by the Golgi apparatus. Binding patterns showed that the enhancement in secretion during both phases of starvation was Golgi-mediated. Cells undergoing severe starvation had a respiration rate approximately twice that of unstressed cells and secreted 4.4 times more protein into the media per unit biomass. These data suggest overlapping Pi starvation-specific and global stress responses in plant cells. Under these conditions, Golgi-mediated protein secretion is enhanced. We present evidence for phosphate starvation inducible enhancement of Pi uptake. Secreted proteins specific for N and Fe starvation are also identified.

摘要

缺磷胁迫会增加悬浮培养的番茄(番茄和番茄属)细胞分泌至少六种蛋白质。细胞对磷(Pi)饥饿表现出双相反应。早期阶段涉及到在转移到 Pi 缺乏的培养基时增强三种蛋白质的分泌,而生物量积累仍以与 Pi 充足细胞相同的速度进行。严重的饥饿,定义为生物量积累的抑制,诱导三种额外蛋白质的分泌增强。在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳后,用特异性反应高尔基体加工的寡糖的抗体对培养基中的蛋白质进行免疫印迹。结合模式表明,在饥饿的两个阶段,分泌的增强都是高尔基体介导的。经历严重饥饿的细胞的呼吸速率大约是未受应激细胞的两倍,并且每单位生物量分泌到培养基中的蛋白质增加了 4.4 倍。这些数据表明植物细胞中存在重叠的 Pi 饥饿特异性和整体应激反应。在这些条件下,高尔基体介导的蛋白质分泌增强。我们提供了磷酸盐饥饿诱导 Pi 吸收增强的证据。还鉴定了针对 N 和 Fe 饥饿的特异性分泌蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a89f/1061971/e593f755d180/plntphys00644-0187-a.jpg

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