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1 p in InsP6 biosynthesis) or Escherichia coli polyphosphate kinase.
2 ARG82/IPK2, which encodes a nuclear inositol polyphosphate kinase.
3 e phospholipase C and two potential inositol polyphosphate kinases.
4 , we pay particular attention to the enzyme, polyphosphate kinase 1 (Poly P kinase 1 or PPK1), respon
5 quantitative real-time PCR (qPCR) assays for polyphosphate kinase 1 (ppk1) and 16S rRNA genes to asse
7 ed consequences of inactivating the gene for polyphosphate kinase 1 (ppk1) in strains of Helicobacter
10 catalyzed by starch and glycogen synthases, polyphosphate kinase (a polymerase), cyanophycin synthet
11 hydroxybutyrate synthesis, and ppk, encoding polyphosphate kinase, all indicated no defect in Ca(2+)
12 sults, acidocalcisomes were shown to contain polyphosphate kinase and exopolyphosphatase activities.
14 Here, we report a requirement for inositol polyphosphate kinases, AtIPK1 and AtIPK2beta, for the la
17 ication and characterization of two inositol polyphosphate kinases from Arabidopsis thaliana, designa
19 d provide insights into the role of inositol polyphosphate kinases in phosphate signaling biology.
21 are a group of calmodulin-regulated inositol polyphosphate kinases (IPKs) that convert the second mes
22 per tetramer by an enzymatic assay in which polyphosphate kinase is used to transfer phosphates from
23 ity and resistance to heat and H2O2; neither polyphosphate kinase nor long-chain poly P was restored.
29 n and ready availability of Escherichia coli polyphosphate kinase (PPK) that can convert poly P and A
30 xiliary NDK-like activity in the capacity of polyphosphate kinase (PPK) to use inorganic polyphosphat
33 sformation protocol to create mutants in the polyphosphate kinase (ppk), the major enzyme responsible
36 an additional component of the degradosome, polyphosphate kinase (PPK), which catalyses the reversib
37 inorganic polyphosphate (polyP) from ATP by polyphosphate kinase (PPK; EC 2.7.4.1) of Escherichia co
38 that heterologous expression of rat inositol polyphosphate kinases rIPK2, a dual specificity inositol
39 t the yeast protein, ArgRIII, is an inositol-polyphosphate kinase that can convert InsP(3) to InsP(4)
40 ed a new family of highly conserved inositol-polyphosphate kinases that contain a newly identified, u
41 te that mutations in genes encoding inositol polyphosphate kinases that produce IP4, IP5, and IP6 imp
42 erichia coli mutant (ppk) lacking the enzyme polyphosphate kinase, which makes long chains of inorgan
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