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1 n increased capacity to be phosphorylated by acetyl phosphate.
2 heY in the presence of the CheY phosphodonor acetyl phosphate.
3 ncreased significantly after incubation with acetyl phosphate.
4 , high-energy phosphodonor molecules such as acetyl phosphate.
5 ho-DrrA exhibits much greater stability than acetyl phosphate.
6  a nucleophilic thiolate anion which attacks acetyl phosphate.
7  variant resembled the pH stability curve of acetyl phosphate.
8                 It was not phosphorylated by acetyl phosphate.
9 d leads to activation by a process requiring acetyl phosphate.
10 (2+)-dependent autophosphorylation with [32P]acetyl phosphate.
11 Z-pta/ack strain, which could not synthesize acetyl phosphate.
12 estored by deleting the enzyme that degrades acetyl phosphate.
13  is phosphorylated by the small phosphodonor acetyl phosphate.
14 ation through either the Rcs phosphorelay or acetyl phosphate.
15 nts reacted faster with phosphoramidate than acetyl phosphate.
16 olites can function in a capacity similar to acetyl phosphate.
17 involved in the maintenance of intracellular acetyl phosphate.
18  group from ATP to acetate, yielding ADP and acetyl phosphate.
19 ration of any other phosphoryl donor such as acetyl phosphate.
20 olate anion of CoA on the carbonyl carbon of acetyl phosphate.
21 ated 10-fold by phosphorylation of CovR with acetyl phosphate.
22  VicR-P, which was prepared by reaction with acetyl phosphate.
23 ficity for longer-chain carboxylic acids and acetyl phosphate.
24 scillation through the signalling metabolite acetyl phosphate.
25 occurs by a mechanism that is independent of acetyl phosphate.
26  the addition of the small phosphoryl donor, acetyl phosphate.
27 m MprB or from small phosphodonors including acetyl phosphate.
28 t with the low-molecular-weight phosphodonor acetyl phosphate.
29 mes were incubated with ADP, Mg(II) ions and acetyl-phosphate.
30 A and pta, the two genes required to produce acetyl-phosphate.
31 roth cultures and precedes the production of acetyl phosphate, a high-energy molecule involved in int
32 ts support the long-standing hypothesis that acetyl phosphate, a physiologically relevant small molec
33            SpxB mutants synthesized 85% less acetyl-phosphate, a potential source of ATP.
34 product, glyoxylate, and increased levels of acetyl phosphate, acetoacetyl coenzyme A (acetoacetyl-Co
35  As part of our attempt to map the impact of acetyl phosphate (acetyl approximately P) on the entire
36 hy to measure the relative concentrations of acetyl phosphate, acetyl coenzyme A, ATP, and GTP over t
37                                              Acetyl phosphate (AcP) is a small-molecule metabolite th
38  to insulate themselves from cross-talk with acetyl phosphate (AcP) or other small phosphodonor metab
39 t respond to the status of the intracellular acetyl phosphate (acP) pool.
40 requires phosphorylated RcsB and showed that acetyl-phosphate (AcP) is a phosphoryl group donor to Rc
41  was observed during planktonic growth, with acetyl phosphate acting as a phosphodonor to LytR.
42 ponse regulators, it remains unclear whether acetyl phosphate acts as a direct phospho donor or funct
43  reaction (acetate + ATP [Formula: see text] acetyl phosphate + ADP), with the exception of the Entam
44 nt, lacking the ability to generate ATP from acetyl phosphate, also failed to grow in xylose minimal
45 ating that both the levels of CsrABb and the acetyl phosphate and acetyl-CoA balance contribute to th
46                                              Acetyl phosphate and diphosphoimidazole were unaffected
47 d phosphorylated similarly to wild type with acetyl phosphate and faster (4-14x) with phosphoramidate
48  NodW can be phosphorylated in vitro by both acetyl phosphate and its cognate kinase, NodV.
49             This review will first introduce acetyl phosphate and its pathway.
50 the other Pi-independent pathway responds to acetyl phosphate and leads to activation by a process re
51 not become phosphorylated in the presence of acetyl phosphate and Mg(2+), although it appeared to bin
52                           Elevated levels of acetyl phosphate and nlpE gene product can result in act
53                 We propose that Arg310 binds acetyl phosphate and orients it for optimal nucleophilic
54 ated by small molecule phosphodonors such as acetyl phosphate and phosphoramidate, but it is phosphor
55 at of the previously described phosphodonors acetyl phosphate and phosphoramidate.
56 ext, it will describe emerging evidence that acetyl phosphate and/or its pathway can influence divers
57 ways involving the conversion of pyruvate to acetyl-phosphate and subsequently leading to fatty acid
58 opose that the in vivo activation of PhoB by acetyl phosphate (and perhaps other two-component respon
59                These are EutD (acetyl-CoA to acetyl phosphate) and EutG (acetaldehyde to ethanol).
60 ssB form a stable complex in the presence of acetyl phosphate, and together they form a ternary compl
61 mpaired in its ability to use either BvgS or acetyl phosphate as a substrate for phosphorylation.
62  by acetylation using the central metabolite acetyl phosphate as the acetyl donor.
63 ant to wild-type OmpR, are phosphorylated by acetyl phosphate as well as the cognate kinase EnvZ, and
64 was prevented by preincubation with acetate, acetyl phosphate, ATP, or ADP, suggesting that E385 is l
65 eral small-molecule phosphodonors, including acetyl phosphate, benzoyl phosphate, carbamoyl phosphate
66 atory system response regulator activated by acetyl phosphate; BosR, an unorthodox DNA-binding protei
67 ontaining glucose, CpxR is phosphorylated by acetyl phosphate but cannot be dephosphorylated, resulti
68  phosphorylation by a small phosphate donor, acetyl phosphate, but not phosphorylation by the kinase
69  reversible magnesium-dependent synthesis of acetyl phosphate by transfer of the ATP gamma-phosphoryl
70      Here we show that activation of PhoB by acetyl phosphate can require the sensor kinase EnvZ.
71                                     Although acetyl phosphate clearly signals through two-component r
72           The classic sensor kinase EnvZ and acetyl phosphate collaborate to produce the optimum leve
73 ough sensing of an intracellular metabolite, acetyl phosphate, controls the expression of two key enz
74 results also demonstrated that acetyl-CoA or acetyl-phosphate could acetylate MDH chemically in vitro
75                              We propose that acetyl phosphate-dependent acetylation is a response to
76 t lysines depends largely on a non-enzymatic acetyl phosphate-dependent mechanism.
77 plasmic stress-responsive promoter cpxP: (i) acetyl phosphate-dependent phosphorylation of the respon
78 or mutations eliminating the ability to make acetyl phosphate did not alter the high level of degP ex
79  mutant, which should not be able synthesize acetyl phosphate, failed to express the van genes, where
80               EutQ and EutP also synthesized acetyl-phosphate from ATP and acetate.
81          Purified UhpA was phosphorylated by acetyl phosphate in a reaction that was dependent on Mg2
82                 It can accept phosphate from acetyl phosphate in a reaction typical of RRs, with tran
83 nts were screened to investigate the role of acetyl phosphate in UTI pathogenesis.
84 ated that the intracellular concentration of acetyl phosphate in wild-type cells reaches at least 3 m
85 nvasion gene expression by the production of acetyl-phosphate in the bacterial cytoplasm, a pathway t
86 r fructose-6-phosphate) to acetate precursor acetyl phosphate, in an engineered strain of the model c
87  kinase VanS, the noncognate kinase PhoR, or acetyl phosphate, indicating that phospho-VanR (P-VanR)
88 nterferes with activation of VanR by PhoR or acetyl phosphate, indicating that VanS also acts as a P-
89                                        Since acetyl phosphate is a central metabolite, this ability w
90 etic analyses also indicated that binding of acetyl phosphate is more dependent on interactions of th
91 of RpoS and OspC expression, suggesting that acetyl-phosphate is an activator of Rrp2.
92 demonstrate that the intermediary metabolite acetyl-phosphate is an important acetyl donor that contr
93 catalyzes the interconversion of acetate and acetyl phosphate, is nearly ubiquitous in bacteria but i
94                  Additionally, EnvZ, but not acetyl phosphate, is required for maximal expression of
95 ented with acetate which presumably restores acetyl phosphate levels by the action of acetate kinase,
96 nscription of ompF under conditions in which acetyl phosphate levels were high.
97       Affinity probing of IL-1ra with methyl acetyl phosphate (MAP) in combination with proteolytic d
98  TopA is decreased by in vitro non-enzymatic acetyl phosphate mediated lysine acetylation, and the pr
99 rified PhoP* protein autophosphorylated from acetyl phosphate more efficiently than the wild-type Pho
100                                      Neither acetyl phosphate nor ATP affected the binding ability, a
101 nt metabolic pathways, which proceed through acetyl phosphate or acetyl-AMP intermediates.
102 h either of the small-molecule phosphodonors acetyl phosphate or carbamoyl phosphate under conditions
103 ence was obtained to support models in which acetyl phosphate or the PTS system contributes to MviA p
104 d with a small phosphorylating agent such as acetyl phosphate or with protein-catalyzed phosphorylati
105 concentration of acetate metabolites such as acetyl-phosphate or acetyladenylate.
106 kphos/KS) for reaction with phosphoramidate, acetyl phosphate, or monophosphoimidazole, with the grea
107  result of requiring a proper cycling of the acetyl phosphate pathway for colonization of the upper u
108                          We demonstrate that acetyl phosphate phosphorylates OmpR at aspartate 55, th
109 s suggest that in the absence of vancomycin, acetyl phosphate phosphorylates VanR, and VanS acts as a
110 yrophosphate (PPi)/inorganic phosphate (Pi) (acetyl phosphate + Pi [Formula: see text] acetate + PPi)
111 te oxidases which decarboxylates pyruvate to acetyl phosphate plus H2O2 and CO2.
112 e decarboxylase, pyruvate decarboxylase, the acetyl phosphate-producing pyruvate oxidase, and the ace
113        The substrates ATP, ADP, acetate, and acetyl phosphate protected against inactivation suggesti
114 ntral metabolic pathways and overlapped with acetyl phosphate-regulated acetylation sites, we deleted
115         Here we show that phosphorylation by acetyl phosphate results in dimerization of CovR.
116 pothesis and list predicted properties of an acetyl phosphate-sensitive pathway.
117                The side chains may include O-acetyl, phosphate, sialic acid, and other moieties.
118 g a PhoP variant that is phosphorylated from acetyl phosphate, some of the mutants failed to repress
119 le only after incubation of the protein with acetyl phosphate, suggesting that phosphorylation is nec
120 ction was also increased in a strain lacking acetyl-phosphate that can donate phosphate groups to Omp
121 to the accumulation of key metabolites, like acetyl phosphate, that facilitate the adaptation of B. b
122          A heterologous system consisting of acetyl phosphate, the bacterial chemotaxis response regu
123                                              Acetyl phosphate, the intermediate of the AckA-Pta pathw
124               It also has been proposed that acetyl phosphate, the intermediate of the phosphotransac
125  placed under the transcriptional control of acetyl phosphate, the system oscillates when the glycoly
126 e CpxR could receive a phosphoryl group from acetyl phosphate, this global signal was not the primary
127 ltransferase (Pta) involved in conversion of acetyl phosphate to acetyl-coenzyme A (acetyl-CoA) and p
128 reversible transfer of the acetyl group from acetyl phosphate to coenzyme A (CoA), forming acetyl-CoA
129 reversible transfer of the acetyl group from acetyl phosphate to coenzyme A (CoA), forming acetyl-CoA
130 reversible transfer of the acetyl group from acetyl phosphate to coenzyme A (CoA): CH(3)COOPO(3)(2-)
131 phate acetyl-transferase (Pta) that converts acetyl-phosphate to acetyl-coenzyme A (CoA), led to the
132     DNase I footprinting determined that the acetyl phosphate-treated CsrR was binding to key sequenc
133          Activation of adhI transcription by acetyl-phosphate-treated AfdR in vitro is inhibited by a
134 pyruvate oxidase, which converts pyruvate to acetyl-phosphate under non-CCR-inducing growth condition
135                                        Thus, acetyl phosphate was not involved in the regulation of o
136  that of the wild type, suggesting that more acetyl-phosphate was being converted to acetyl-CoA in th
137       This enzyme mediates the production of acetyl phosphate, which has been shown to serve as a low
138                                              Acetyl phosphate, which phosphorylates RssB, is required
139 ng aerobic growth, SpxB synthesizes H2O2 and acetyl phosphate, which play roles in metabolism, signal
140 rom small-molecule phosphate donors, such as acetyl phosphate, while the VirGI77V/D52E allele carries

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