Dorion Sonia, Dumas France, Rivoal Jean
IRBV, Université de Montréal, 4101 Rue Sherbrooke est, Montréal, Quebec, H1X 2B2 Canada.
J Exp Bot. 2006;57(15):4079-88. doi: 10.1093/jxb/erl175. Epub 2006 Oct 30.
NDPK catalyses the interconversion of NTPs and NDPs using a phosphohistidine intermediate as part of its catalytic site. Recombinant Solanum chacoense cytosolic NDPK incubated with [gamma-(32)P]ATP was allowed to autophosphorylate and (32)P-labelled P-Ser was identified in an acid hydrolysate of the protein by two-dimensional TLC. Further analysis of (32)P-labelled recombinant NDPK by tryptic digestion followed by automated Edman sequencing of the radioactive peptide allowed the identification of a single and conserved P-Ser residue at position 117. Analysis of site-directed mutants where Ser117 was substituted to Asp indicated that the presence of a negative charge at position 117 dramatically lowered the enzyme's catalytic efficiency. Ser autophosphorylation was markedly reduced with increasing ADP concentrations in the autophosphorylation assay. These findings provide evidence that autophosphorylation of cytosolic NDPK on Ser117 could constitute a regulatory mechanism for this important enzyme and that autophosphorylation of Ser117 is modulated by NDP availability.
核苷二磷酸激酶(NDPK)利用磷酸组氨酸中间体作为其催化位点的一部分,催化核苷三磷酸(NTPs)和核苷二磷酸(NDPs)的相互转化。将重组的查科茄(Solanum chacoense)胞质NDPK与[γ-(32)P]ATP一起孵育,使其进行自磷酸化,通过二维薄层层析(TLC)在该蛋白质的酸水解产物中鉴定出(32)P标记的磷酸丝氨酸(P-Ser)。通过胰蛋白酶消化对(32)P标记的重组NDPK进行进一步分析,然后对放射性肽段进行自动埃德曼测序,从而鉴定出在第117位存在一个单一且保守的P-Ser残基。对丝氨酸117被天冬氨酸取代的定点突变体进行分析表明,第117位存在负电荷会显著降低该酶的催化效率。在自磷酸化测定中,随着ADP浓度的增加,丝氨酸自磷酸化明显减少。这些发现提供了证据,表明胞质NDPK在丝氨酸117位点的自磷酸化可能构成这种重要酶的一种调节机制,并且丝氨酸117的自磷酸化受核苷二磷酸可用性的调节。