Eprintsev Alexander T, Fedorin Dmitry N, Salnikov Alexei V, Igamberdiev Abir U
Department of Biochemistry and Cell Physiology, Voronezh State University, Voronezh 394006, Russia.
Department of Biology, Memorial University of Newfoundland, St. John's, NL A1B 3X9, Canada.
J Plant Physiol. 2015 Jun 1;181:1-8. doi: 10.1016/j.jplph.2015.02.014. Epub 2015 Apr 15.
Isocitrate lyase (EC 4.1.3.1) catalyzes the reversible conversion of d-isocitrate to succinate and glyoxylate. It is usually associated with the glyoxylate cycle in glyoxysomes, although the non-glyoxysomal form has been reported and its relation to interconversion of organic acids outside the glyoxylate cycle suggested. We investigated the expression of two isocitrate lyase genes and activities of the glyoxysomal (ICL1) and cytosolic (ICL2) forms of isocitrate lyase in amaranth (Amaranthus caudatus L.) seedlings. Both forms were separated and purified. The cytosolic form had a low optimum pH (6.5) and was activated by Mn(2+) ions, while Mg(2+) was ineffective, and had a lower affinity to d, l-isocitrate (Km 63 μM) as compared to the glyoxysomal form (optimum pH 7.5, K(m) 45 μM), which was activated by Mg(2+). The highest ICL1 activity was observed on the 3rd day of germination; then the activity and expression of the corresponding gene decreased, while the activity of ICL2 and gene expression increased to the 7th day of germination and then remained at the same level. It is concluded that the function of ICL1 is related to the glyoxylate cycle while ICL2 functions independently from the glyoxylate cycle and interconverts organic acids in the cytosol.
异柠檬酸裂解酶(EC 4.1.3.1)催化D-异柠檬酸可逆转化为琥珀酸和乙醛酸。它通常与乙醛酸循环体中的乙醛酸循环相关,不过已有报道称存在非乙醛酸循环体形式,并暗示了其与乙醛酸循环外有机酸相互转化的关系。我们研究了苋菜(尾穗苋)幼苗中两个异柠檬酸裂解酶基因的表达以及乙醛酸循环体形式(ICL1)和胞质形式(ICL2)的异柠檬酸裂解酶活性。两种形式均被分离和纯化。胞质形式的最适pH较低(6.5),且被Mn(2+)离子激活,而Mg(2+)无效,与乙醛酸循环体形式相比,它对D,L-异柠檬酸的亲和力较低(Km为63 μM),乙醛酸循环体形式的最适pH为7.5,K(m)为45 μM,被Mg(2+)激活。在萌发第3天观察到ICL1活性最高;随后相应基因的活性和表达下降,而ICL2的活性和基因表达在萌发第7天增加,然后保持在同一水平。得出的结论是,ICL1的功能与乙醛酸循环相关,而ICL2的功能独立于乙醛酸循环,并在细胞质中使有机酸相互转化。