USDA-ARS Crops Pathology and Genetics Research Unit, Department of Plant Sciences, Mail Stop 1, University of California at Davis, Davis, CA 95616, USA.
Biochem J. 2011 Apr 15;435(2):373-80. doi: 10.1042/BJ20101610.
GSTZs [Zeta class GSTs (glutathione transferases)] are multifunctional enzymes that belong to a highly conserved subfamily of soluble GSTs found in species ranging from fungi and plants to animals. GSTZs are known to function as MAAIs [MAA (maleylacetoacetate) isomerases], which play a role in tyrosine catabolism by catalysing the isomerization of MAA to FAA (fumarylacetoacetate). As tyrosine metabolism in plants differs from animals, the significance of GSTZ/MAAI is unclear. In rice (Oryza sativa L.), a major QTL (quantitative trait locus) for seedling cold tolerance has been fine mapped to a region containing the genes OsGSTZ1 and OsGSTZ2. Sequencing of tolerant (ssp. japonica cv. M-202) and sensitive (ssp. indica cv. IR50) cultivars revealed two SNPs (single nucleotide polymorphisms) in OsGSTZ2 that result in amino acid differences (I99V and N184I). Recombinant OsGSTZ2 containing the Val99 residue found in IR50 had significantly reduced activity on MAA and DCA (dichloroacetic acid), but the Ile184 residue had no effect. The distribution of the SNP (c.295A>G) among various rice accessions indicates a significant association with chilling sensitivity in rice seedlings. The results of the present study show that naturally occurring OsGSTZ2 isoforms differ in their enzymatic properties, which may contribute to the differential response to chilling stress generally exhibited by the two major rice subspecies.
GSTZs(Zeta 类 GSTs(谷胱甘肽转移酶))是多功能酶,属于在从真菌和植物到动物的各种物种中发现的高度保守的可溶性 GST 亚家族。GSTZs 已知作为 MAAIs(MAA(马来酰乙酰乙酸)异构酶)发挥作用,通过催化 MAA 异构化为 FAA(富马酰乙酰乙酸)来参与酪氨酸分解代谢。由于植物中的酪氨酸代谢与动物不同,因此 GSTZ/MAAI 的意义尚不清楚。在水稻(Oryza sativa L.)中,幼苗耐寒性的一个主要 QTL(数量性状位点)已被精细定位到包含基因 OsGSTZ1 和 OsGSTZ2 的区域。对耐冷(ssp. japonica cv. M-202)和敏感(ssp. indica cv. IR50)品种进行测序,发现 OsGSTZ2 中有两个 SNP(单核苷酸多态性)导致氨基酸差异(I99V 和 N184I)。含有在 IR50 中发现的 Val99 残基的重组 OsGSTZ2 对 MAA 和 DCA(二氯乙酸)的活性显著降低,但 Ile184 残基没有影响。该 SNP(c.295A>G)在各种水稻品种中的分布表明与水稻幼苗的冷敏感存在显著关联。本研究结果表明,天然存在的 OsGSTZ2 同工酶在酶学性质上存在差异,这可能导致两个主要水稻亚种对冷胁迫的反应存在差异。