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菠菜中四种磷酸核糖焦磷酸合成酶同工酶的细胞器和胞质定位

Organellar and cytosolic localization of four phosphoribosyl diphosphate synthase isozymes in spinach.

作者信息

Krath B N, Hove-Jensen B

机构信息

Center for Enzyme Research, Institute of Molecular Biology, University of Copenhagen, 83H Solvgade, DK-1307 Copenhagen K, Denmark.

出版信息

Plant Physiol. 1999 Feb;119(2):497-506. doi: 10.1104/pp.119.2.497.

Abstract

Four cDNAs encoding phosphoribosyl diphosphate (PRPP) synthase were isolated from a spinach (Spinacia oleracea) cDNA library by complementation of an Escherichia coli Deltaprs mutation. The four gene products produced PRPP in vitro from ATP and ribose-5-phosphate. Two of the enzymes (isozymes 1 and 2) required inorganic phosphate for activity, whereas the others were phosphate independent. PRPP synthase isozymes 2 and 3 contained 76 and 87 amino acid extensions, respectively, at their N-terminal ends in comparison with other PRPP synthases. Isozyme 2 was synthesized in vitro and shown to be imported and processed by pea (Pisum sativum) chloroplasts. Amino acid sequence analysis indicated that isozyme 3 may be transported to mitochondria and that isozyme 4 may be located in the cytosol. The deduced amino acid sequences of isozymes 1 and 2 and isozymes 3 and 4 were 88% and 75% identical, respectively. In contrast, the amino acid identities of PRPP synthase isozyme 1 or 2 with 3 or 4 was modest (22%-25%), but the sequence motifs for binding of PRPP and divalent cation-nucleotide were identified in all four sequences. The results indicate that PRPP synthase isozymes 3 and 4 belong to a new class of PRPP synthases that may be specific to plants.

摘要

通过互补大肠杆菌Δprs突变,从菠菜(Spinacia oleracea)cDNA文库中分离出四个编码磷酸核糖焦磷酸(PRPP)合酶的cDNA。这四种基因产物在体外由ATP和5-磷酸核糖产生PRPP。其中两种酶(同工酶1和2)的活性需要无机磷酸盐,而另外两种则不依赖磷酸盐。与其他PRPP合酶相比,PRPP合酶同工酶2和3在其N末端分别含有76和87个氨基酸的延伸。同工酶2在体外合成,并显示可被豌豆(Pisum sativum)叶绿体导入和加工。氨基酸序列分析表明,同工酶3可能被转运到线粒体,同工酶4可能位于细胞质中。同工酶1和2以及同工酶3和4的推导氨基酸序列分别有88%和75%的同源性。相比之下,PRPP合酶同工酶1或2与3或4的氨基酸同源性适中(22%-25%),但在所有四个序列中都鉴定出了PRPP和二价阳离子-核苷酸结合的序列基序。结果表明,PRPP合酶同工酶3和4属于一类可能对植物特异的新型PRPP合酶。

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