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para-Nitrophenylphosphate (pNPP) is a non-proteinaceous chromogenic substrate for alkaline and acid phosphatases used in ELISA and conventional spectrophotometric assays. [1] Phosphatases catalyze the hydrolysis of pNPP liberating inorganic phosphate and the conjugate base of para -nitrophenol (pNP).
The enzyme alkaline phosphatase (ALP, alkaline phenyl phosphatase, also abbreviated PhoA) is a phosphatase with the physiological role of dephosphorylating compounds. The enzyme is found across a multitude of organisms, prokaryotes and eukaryotes alike, with the same general function, but in different structural forms suitable to the environment they function in. Alkaline phosphatase is found ...
The enzyme 4-nitrophenylphosphatase (EC 3.1.3.41) catalyzes the reaction . 4-nitrophenyl phosphate + H 2 O 4-nitrophenol + phosphate. This enzyme belongs to the family of hydrolases, specifically those acting on phosphoric monoester bonds.
Alkaline phosphatase primarily hydrolyzes phosphate monoester bonds, but it shows some promiscuity towards hydrolyzing phosphate diester bonds, making it a sort of opposite to NPP. The active sites of these two enzymes show marked similarities, namely in the presence of nearly superimposable Zn 2+ bimetallo catalytic centers.
76768 Ensembl ENSG00000163283 ENSMUSG00000079440 UniProt P05187 F8VPQ6 RefSeq (mRNA) NM_001632 NM_001081082 RefSeq (protein) NP_001623 NP_001074551 Location (UCSC) Chr 2: 232.38 – 232.38 Mb Chr 1: 87.03 – 87.03 Mb PubMed search Wikidata View/Edit Human View/Edit Mouse Alkaline phosphatase, placental type also known as placental alkaline phosphatase (PLAP) is an allosteric enzyme that in ...
A protein phosphatase is a phosphatase enzyme that removes a phosphate group from the phosphorylated amino acid residue of its substrate protein. Protein phosphorylation is one of the most common forms of reversible protein posttranslational modification ( PTM ), with up to 30% of all proteins being phosphorylated at any given time.
This type of phosphatase includes metal-dependent protein phosphatases (PPMs) and aspartate-based phosphatases. PP1 has been found to be important in the control of glycogen metabolism, muscle contraction , cell progression, neuronal activities, splicing of RNA , mitosis , [ 1 ] cell division, apoptosis , protein synthesis, and regulation of ...