Corpas FJ, Barroso JB, Sandalio LM, Palma JM, Lupiáñez JA
Departamento de Bioquímica, Biología Celular y Molecular de Plantas, Estación Experimental del Zaidín, Consejo Superior de Investigaciones Científicas, Apartado 419, E-18080 Granada, Spain.
Plant Physiol. 1999 Nov;121(3):921-928. doi: 10.1104/pp.121.3.921.
The peroxisomal localization and characterization of NADP-dependent isocitrate dehydrogenase (perICDH) in young and senescent pea (Pisum sativum) leaves was studied by subcellular fractionation, kinetic analysis, immunoblotting, and immunoelectron microscopy. The subunit molecular mass for perICDH determined by immunoblotting was 46 kD. By isoelectric focusing (IEF) of the peroxisomal matrix fraction, the NADP-ICDH activity was resolved into four isoforms, perICDH-1 to perICDH-4, with isoelectric points (pIs) of 6.0, 5.6, 5.4, and 5.2, respectively. The kinetic properties of the NADP-ICDH in peroxisomes from young and senescent pea leaves were analyzed. The maximum initial velocity was the same in peroxisomes from young and senescent leaves, while the Michaelis constant value in senescent leaf peroxisomes was 11-fold lower than in young leaf peroxisomes. The protein levels of NADP-ICDH in peroxisomes were not altered during senescence. The kinetic behavior of this enzyme suggests a possible fine control of enzymatic activity by modulation of its Michaelis constant during the natural senescence of pea leaves. After embedding, electron microscopy immunogold labeling of NADP-ICDH confirmed that this enzyme was localized in the peroxisomal matrix. Peroxisomal NADP-ICDH represents an alternative dehydrogenase in these cell organelles and may be the main system for the reduction of NADP to NADPH for its re-utilization in the peroxisomal metabolism.
通过亚细胞分级分离、动力学分析、免疫印迹和免疫电子显微镜技术,研究了豌豆(Pisum sativum)幼叶和衰老叶片中NADP依赖的异柠檬酸脱氢酶(perICDH)的过氧化物酶体定位及特性。免疫印迹法测定的perICDH亚基分子量为46 kD。通过对过氧化物酶体基质组分进行等电聚焦(IEF),NADP-ICDH活性被解析为四种同工型,即perICDH-1至perICDH-4,其等电点(pI)分别为6.0、5.6、5.4和5.2。分析了豌豆幼叶和衰老叶片过氧化物酶体中NADP-ICDH的动力学特性。幼叶和衰老叶片过氧化物酶体中的最大初始速度相同,而衰老叶片过氧化物酶体中的米氏常数比幼叶过氧化物酶体中的低11倍。衰老过程中过氧化物酶体中NADP-ICDH的蛋白质水平未发生改变。该酶的动力学行为表明,在豌豆叶片自然衰老过程中,可能通过调节其米氏常数对酶活性进行精细调控。包埋后,NADP-ICDH的电子显微镜免疫金标记证实该酶定位于过氧化物酶体基质中。过氧化物酶体NADP-ICDH是这些细胞器中的一种替代脱氢酶,可能是将NADP还原为NADPH以便在过氧化物酶体代谢中重新利用的主要系统。