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Gene/Protein
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Target Concepts:
Gene/Protein
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Query: UMLS:C0027960 (
mole
)
21,279
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Human term placenta contains an
ATP diphosphohydrolase
activity which hydrolyses ATP to ADP and inorganic phosphate and ADP to AMP and a second
mole
of inorganic phosphate. The activity has a pH optimum between 8.0 and 8.5. Magnesium or calcium ions are required for maximum activity. Other nucleoside phosphates, p-nitrophenyl phosphate or sodium pyrophosphate, are not hydrolysed. The activity is not due to ATPases, or to myokinase, as determined by the use of inhibitors. NaF and NaN3 were found to inhibit strongly the activity thus identifying it as an
ATP diphosphohydrolase
. A sensitive enzymatic assay for measurement of AMP, one of the products of the reaction, was established, based on the strong inhibition of muscle fructose 1,6-biphosphatase by AMP. The range of the assay was 0.05-0.8 microM AMP.
ATP diphosphohydrolase
was found to have a rate of AMP production from ADP twice the rate from ATP. Under the same conditions, the assay for Pi release, on the other hand, gave velocities similar to each other for the two substrates. The activity appears to be identical to the ADP-hydrolysing activity in placenta reported by others.
...
PMID:Identification of ATP diphosphohydrolase activity in human term placenta using a novel assay for AMP. 217 97
In this study, the recognition contour of Chemosensor 1 was investigated using semiaqueous methanol (X
H
,
mole
fraction = 0.31) for a range of anions and bioactive species. Host-receptor signalling based on the internal charge transfer mechanism for Chemosensor 1 was explored and reported. Structure of Chemosensor 1 and its plausible anion coordination based on hydrogen bonding is complemented with density functional theory. Consequently, we investigated the applicability of the synthesized probe in blood plasma, urine, tap water samples, and for monitoring of ATP in lysosomes by
apyrase
enzyme.
...
PMID:Exploration of highly selective fluorogenic 'on-off' chemosensor for H
2
PO
4
-
ions: ICT-based sensing and ATPase activity profiling. 3184 Sep 19