Lovatt C J, Albert L S
Department of Botany, University of Rhode Island, Kingston, Rhode Island 02881.
Plant Physiol. 1979 Oct;64(4):562-9. doi: 10.1104/pp.64.4.562.
The occurrence of the complete orotic acid pathway for the biosynthesis de novo of pyrimidine nucleotides was demonstrated in the intact cells of roots excised from summer squash (Cucurbita pepo L. cv. Early Prolific Straightneck). Evidence that the biosynthesis of pyrimidine nucleotides proceeds via the orotate pathway in C. pepo included: (a) demonstration of the incorporation of [(14)C]NaHCO(3), [(14)C]carbamylaspartate, and [(14)C]orotic acid into uridine nucleotides; (b) the isolation of [(14)C]orotic acid when [(14)C]NaHCO(3) and [(14)C]carbamylaspartate were used as precursors; (c) the observation that 6-azauridine, a known inhibitor of the pathway, blocked the incorporation of early precursors into uridine nucleotides while causing a concomitant accumulation of orotic acid; and (d) demonstration of the activities of the component enzymes of the orotate pathway in assays employing cell-free extracts.Regulation of the activity of the orotate pathway by end product inhibition was demonstrated in the intact cells of excised roots by measuring the influence of added pyrimidine nucleosides on the incorporation of [(14)C]NaHCO(3) into uridine nucleotides. The addition of either uridine or cytidine inhibited the incorporation of [(14)C]NaHCO(3) into uridine nucleotides by about 80%. The observed inhibition was demonstrated to be readily reversible upon transfer of the roots to a nucleoside-free medium. Experiments employing various radiolabeled precursors indicated that one or both of the first two enzymes in the orotate pathway are the only site(s) of regulation of physiological importance.
在西葫芦(Cucurbita pepo L. cv. Early Prolific Straightneck)切除的根的完整细胞中,证明了嘧啶核苷酸从头生物合成的完整乳清酸途径的存在。西葫芦中嘧啶核苷酸生物合成通过乳清酸途径进行的证据包括:(a)证明[(14)C]NaHCO(3)、[(14)C]氨甲酰天冬氨酸和[(14)C]乳清酸掺入尿苷核苷酸;(b)当使用[(14)C]NaHCO(3)和[(14)C]氨甲酰天冬氨酸作为前体时,分离出[(14)C]乳清酸;(c)观察到6-氮尿苷(该途径的已知抑制剂)阻断早期前体掺入尿苷核苷酸,同时导致乳清酸的伴随积累;(d)在使用无细胞提取物的测定中证明乳清酸途径的组成酶的活性。通过测量添加的嘧啶核苷对[(14)C]NaHCO(3)掺入尿苷核苷酸的影响,在切除根的完整细胞中证明了终产物抑制对乳清酸途径活性的调节。添加尿苷或胞苷可使[(14)C]NaHCO(3)掺入尿苷核苷酸的量抑制约80%。观察到的抑制作用在将根转移到无核苷培养基后很容易逆转。使用各种放射性标记前体的实验表明,乳清酸途径中前两种酶中的一种或两种是生理重要调节的唯一部位。