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Systems Biology of Lignin Biosynthesis in Populustrichocarpa: Heteromeric 4-Coumaric Acid:Coenzyme A Ligase ProteinComplex Formation Regulation and Numerical Modeling

机译:胡杨木质素生物合成的系统生物学毛果癣:异聚4-香豆酸:辅酶A连接酶蛋白复杂物的形成调节和数值建模

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摘要

As a step toward predictive modeling of flux through the pathway of monolignol biosynthesis in stem differentiating xylem of Populus trichocarpa, we discovered that the two 4-coumaric acid:CoA ligase () isoforms, 4CL3 and 4CL5, interact in vivo and in vitro to form a heterotetrameric protein complex. This conclusion is based on laser microdissection, coimmunoprecipitation, chemical cross-linking, bimolecular fluorescence complementation, and mass spectrometry. The tetramer is composed of three subunits of 4CL3 and one of 4CL5. 4CL5 appears to have a regulatory role. This protein–protein interaction affects the direction and rate of metabolic flux for monolignol biosynthesis in P. trichocarpa. A mathematical model was developed for the behavior of 4CL3 and 4CL5 individually and in mixtures that form the enzyme complex. The model incorporates effects of mixtures of multiple hydroxycinnamic acid substrates, competitive inhibition, uncompetitive inhibition, and self-inhibition, along with characteristic of the substrates, the enzyme isoforms, and the tetrameric complex. Kinetic analysis of different ratios of the enzyme isoforms shows both inhibition and activation components, which are explained by the mathematical model and provide insight into the regulation of metabolic flux for monolignol biosynthesis by protein complex formation.
机译:作为对毛果杨茎干木质部分化过程中木质素生物合成途径进行通量预测模型的一步,我们发现了两种4-香豆酸:CoA连接酶()同工型4CL3和4CL5在体内和体外相互作用形成异四聚体蛋白复合物。该结论基于激光显微切割,免疫共沉淀,化学交联,双分子荧光互补和质谱分析。四聚体由4CL3的三个亚基和4CL5之一构成。 4CL5似乎具有调节作用。这种蛋白质之间的相互作用会影响毛果单果的单木质醇生物合成的代谢通量的方向和速率。针对4CL3和4CL5单独和混合形成酶复合物的行为,建立了数学模型。该模型结合了多种羟基肉桂酸底物的混合物的作用,竞争性抑制,非竞争性抑制和自我抑制,以及底物,酶同工型和四聚体复合物的特征。酶同工型的不同比例的动力学分析显示抑制和激活成分,这由数学模型解释,并为通过蛋白质复合物形成的单木酚生物合成调节代谢通量提供了见识。

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