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Transmembrane Signaling via Phosphatidylinositol 45-Bisphosphate Hydrolysis in Plants

机译:植物磷脂酰肌醇45-双磷酸酯水解过程中的跨膜信号传递

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摘要

Recent investigations have confirmed the presence of the polyphosphoinositides, phosphatidylinositol 4-phosphate and phosphatidylinositol 4,5-bisphosphate (PIP2), as well as inositol phospholipid-specific phospholipase C in higher plant and microalgal cells. In addition, it has been shown that stimulation of some photosynthetic cell types by environmental or hormonal challenge is accompanied by degradation of the polyphosphoinositides. The products of phospholipase C-catalyzed PIP2 hydrolysis, inositol 1,4,5-trisphosphate and diacylglycerol, appear to be capable of releasing organelle-bound Ca2+ and stimulating protein kinase C-like activity in vitro. However, a direct cause and effect relationship between stimulated PIP2 breakdown and changes in intracellular calcium, protein phosphorylation, or cell function has not yet been unequivocally established. Despite a number of technical difficulties slowing progress in this field, it is likely that photosynthetic organisms will soon be shown to transmit physiologically significant extracellular signals across their plasma membranes by a PIP2-mediated transduction mechanism.
机译:最近的研究已经证实在高等植物和微藻细胞中存在多磷酸肌醇,4-磷酸肌醇,4,5-双磷酸磷脂酰肌醇(PIP2)以及肌醇磷脂特异性磷脂酶C。另外,已经表明,环境或激素激发对某些光合细胞类型的刺激伴随着多磷酸肌醇的降解。磷脂酶C催化的PIP2水解产物肌醇1,4,5-三磷酸和二酰基甘油似乎能够释放细胞器结合的Ca 2 + 并刺激体外蛋白激酶C样活性。 。但是,尚未明确地确定受激PIP2分解与细胞内钙,蛋白质磷酸化或细胞功能变化之间的直接因果关系。尽管有许多技术难题阻碍了该领域的进展,但很可能很快就会显示出光合生物通过PIP2介导的转导机制在其质膜上传递生理学重要的细胞外信号。

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