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玉米幼苗根系中胞质和非胞质己糖激酶的亚细胞分布及动力学特性:对己糖磷酸化的影响

Subcellular distribution and kinetic properties of cytosolic and non-cytosolic hexokinases in maize seedling roots: implications for hexose phosphorylation.

作者信息

da-Silva W S, Rezende G L, Galina A

机构信息

Departamento de Bioquímica Médica, Instituto de Ciências Biomédicas, Universidade Federal do Rio de Janeiro, Rio de Janeiro, 21941-590, RJ, Brasil.

出版信息

J Exp Bot. 2001 Jun;52(359):1191-201.

Abstract

Hexose phosphorylation by hexokinases plays an important role in glycolysis, biosynthesis and control of sugar-modulated genes. Several cytosolic hexokinase and fructokinase isoforms have been characterized and organelle-bound hexokinases have also been detected in higher plants. In this study a hexokinase activity is described that is inhibited by ADP (K(i)=30 microM) and mannoheptulose (K(i) congruent with 300 microM) in non-cytosolic fractions (mitochondria, Golgi apparatus and microsomes) obtained from preparations of seedling roots of maize (Zea mays L.). The catalytic efficiency (Vmax/Km) for both ATP and glucose in all non-cytosolic hexokinase fractions is more than one order of magnitude higher than that of cytosolic hexokinase and fructokinases. Low (30%) or no ADP and mannoheptulose inhibition is observed with hexokinase and fructokinase activities derived from the cytosolic compartment obtained after ion exchange and affinity chromatography. The soluble fructokinase (FK) shows fructose cooperativity (Hill n>2). The Vmax/Km ratio is about 3-fold higher for ATP than for other NTPs and no difference for hexose phosphorylation efficiencies is found between cytosolic hexokinase and fructokinase isoforms (FK1, FK2) with ATP as substrate. The K(i) for fructose inhibition is 2 mM for FK1 and 25 mM for FK2. The data indicate that low energy-charge and glucose analogues preferentially inhibit the membrane-bound hexokinases possibly involved in sugar-sensing, but not the cytosolic hexokinases and fructokinases.

摘要

己糖激酶催化的己糖磷酸化在糖酵解、生物合成以及糖调控基因的控制中发挥着重要作用。已对几种胞质己糖激酶和果糖激酶同工型进行了表征,并且在高等植物中也检测到了与细胞器结合的己糖激酶。在本研究中,描述了一种己糖激酶活性,该活性在从玉米(Zea mays L.)幼苗根制备物中获得的非胞质组分(线粒体、高尔基体和微粒体)中受到ADP(K(i)=30 microM)和甘露庚酮糖(K(i)约为300 microM)的抑制。所有非胞质己糖激酶组分中ATP和葡萄糖的催化效率(Vmax/Km)比胞质己糖激酶和果糖激酶高一个多数量级。离子交换和亲和层析后从胞质区室获得的己糖激酶和果糖激酶活性观察到低(30%)或无ADP和甘露庚酮糖抑制。可溶性果糖激酶(FK)表现出果糖协同性(希尔系数n>2)。ATP的Vmax/Km比值比其他NTPs高约3倍,以ATP为底物时,胞质己糖激酶和果糖激酶同工型(FK1、FK2)之间的己糖磷酸化效率没有差异。FK1对果糖抑制的K(i)为2 mM,FK2为25 mM。数据表明,低能量电荷和葡萄糖类似物优先抑制可能参与糖感知的膜结合己糖激酶,但不抑制胞质己糖激酶和果糖激酶。

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