Zelitch I
Department of Biochemistry, The Connecticut Agricultural Experiment Station, New Haven, Connecticut 06504.
Plant Physiol. 1978 Feb;61(2):236-41. doi: 10.1104/pp.61.2.236.
Under conditions where glycolate synthesis was inhibited at least 50% in tobacco (Nicotiana tabacum L.) leaf discs treated with glycidate (2,3-epoxypropionate), the ribulose diphosphate carboxylase activity in extracts and the inhibition of the activity by 100% oxygen were unaffected by the glycidate treatment. [1-(14)C]Glycidate was readily taken into leaf discs and was bound to leaf proteins, but the binding occurred preferentially with proteins of molecular weight lower than ribulose diphosphate carboxylase. Glycidate added to the isolated enzyme did not inhibit ribulose diphosphate carboxylase activity or affect its inhibition by 100% O(2). Thus, glycidate did not inhibit glycolate synthesis by a direct effect on ribulose diphosphate carboxylase/oxygenase.NADH-glyoxylate reductase and phosphoglycolate phosphatase activities were also unaffected in extracts of leaf discs supplied with glycidate, but NADPH-glyoxylate reductase was inhibited about 35% in such extracts. Addition of 10 mm glycidate to isolated NADPH-glyoxylate reductase inhibited the activity about 25% after 15 minutes of reaction.The small inhibition of NADPH-glyoxylate reductase by glycidate may help to explain the increase in glyoxylate concentration found in glycidate-treated leaf discs. Increasing the glyoxylate pool size in leaf discs has been shown to effectively block glycolate synthesis and photorespiration and increase net photosynthesis. Thus, the similar effects brought about by glycidate in leaf discs can be attributed to indirect effects of metabolic regulation.
在用乙醛酸酯(2,3 - 环氧丙酸酯)处理的烟草(Nicotiana tabacum L.)叶圆片中,当乙醇酸合成被抑制至少50%的条件下,提取物中的核酮糖二磷酸羧化酶活性以及100%氧气对该活性的抑制作用不受乙醛酸酯处理的影响。[1-(14)C]乙醛酸酯很容易被叶圆片吸收并与叶蛋白结合,但这种结合优先发生在分子量低于核酮糖二磷酸羧化酶的蛋白质上。添加到分离酶中的乙醛酸酯不会抑制核酮糖二磷酸羧化酶活性,也不会影响其被100%氧气抑制的情况。因此,乙醛酸酯不是通过直接影响核酮糖二磷酸羧化酶/加氧酶来抑制乙醇酸合成的。
在供应了乙醛酸酯的叶圆片提取物中,NADH - 乙醛酸还原酶和磷酸乙醇酸磷酸酶活性也未受影响,但NADPH - 乙醛酸还原酶在这类提取物中被抑制了约35%。向分离的NADPH - 乙醛酸还原酶中添加10 mM乙醛酸酯,反应15分钟后活性被抑制约25%。乙醛酸酯对NADPH - 乙醛酸还原酶的轻微抑制可能有助于解释在经乙醛酸酯处理的叶圆片中发现的乙醛酸浓度升高的现象。已表明增加叶圆片中乙醛酸库的大小可有效阻断乙醇酸合成和光呼吸并增加净光合作用。因此,乙醛酸酯在叶圆片中产生的类似效应可归因于代谢调节的间接作用。