首页> 美国卫生研究院文献>Biochemical Journal >Graminicide insensitivity correlates with herbicide-binding co-operativity on acetyl-CoA carboxylase isoforms.
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Graminicide insensitivity correlates with herbicide-binding co-operativity on acetyl-CoA carboxylase isoforms.

机译:除草剂的不敏感性与对乙酰辅酶A羧化酶同工型的除草剂结合协同作用有关。

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摘要

The sensitivity of grass species to important classes of graminicide herbicides inhibiting ACCase (acetyl-CoA carboxylase) is associated with a specific inhibition of the multifunctional ACCase located in the plastids of grasses. In contrast, the multisubunit form of ACCase found in the chloroplasts of dicotyledonous plants is insensitive and the minor cytosolic multifunctional isoforms of the enzyme in both types of plants are also less sensitive to inhibition. We have isolated, separated and characterized the multifunctional ACCase isoforms found in exceptional examples of grasses that are either inherently insensitive to these graminicides, or from biotypes showing acquired resistance to their use. Major and minor multifunctional enzymes were isolated from cell suspension cultures of Festuca rubra and the 'Notts A1'-resistant biotype of Alopecurus myosuroides, and their properties compared with those isolated from cells of wild-type sensitive A. myosuroides or from sensitive maize. Purifications of up to 300-fold were necessary to separate the two isoforms. The molecular masses (200-230 kDa) and K(m) values for all three substrates (ATP, bicarbonate and acetyl-CoA) were similar for the different ACCases, irrespective of their graminicide sensitivity. Moreover, we found no correlation between the ability of isoforms to carboxylate propionyl-CoA and their sensitivity to graminicides. However, insensitive purified forms of ACCase were characterized by herbicide-binding co-operativity, whereas, in contrast, sensitive forms of the enzymes were not. Our studies on isolated individual isoforms of ACCase from grasses support and extend previous indications that herbicide binding co-operativity is the only kinetic property that differentiates naturally or selected insensitive enzymes from the typical sensitive forms usually found in grasses.
机译:草种对重要种类的抑制ACCase(乙酰辅酶A羧化酶)的除草剂除草剂的敏感性与对位于草质中的多功能ACCase的特异性抑制有关。相反,在双子叶植物的叶绿体中发现的ACCase的多亚基形式是不敏感的,并且两种植物中酶的次要胞质多功能同工型对抑制作用也都较不敏感。我们已经分离,分离和鉴定了在草的特殊实例中发现的多功能ACCase亚型,这些亚型要么固有地对这些杀草除草剂不敏感,要么从对它们的使用表现出抗性的生物型中分离出来。从Festuca rubra细胞悬浮培养物中分离出主要和次要多功能酶,以及从野生型敏感的A. myosuroides或敏感的玉米中分离得到的'Notts A1'抗性生物型的Alopecurus myosuroides。要分离这两种同工型,最高需要纯化300倍。三种不同底物(ATP,碳酸氢盐和乙酰辅酶A)的三种底物(ATP,碳酸氢盐和乙酰辅酶A)的分子量(200-230 kDa)和K(m)值均相似,无论其对除草剂的敏感性如何。此外,我们发现同工型羧化丙酰辅酶A的能力与其对杀草剂的敏感性之间没有关联。但是,不敏感的纯化形式的ACCase的特征在于除草剂结合的协同作用,而相反,酶的敏感形式则没有。我们对从草中分离出的ACCase单个同工型的研究支持并扩展了先前的迹象,即除草剂结合协同作用是唯一将天然或选定的不敏感酶与通常在草中发现的典型敏感形式区分开的动力学特性。

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