Acid phosphatase: Difference between revisions

From Proteopedia
Jump to navigationJump to search
Michal Harel (talk | contribs)
No edit summary
Michal Harel (talk | contribs)
No edit summary
 
(7 intermediate revisions by the same user not shown)
Line 3: Line 3:


'''Acid phosphatase''' (ACP, EC number [http://www.brenda-enzymes.info/php/result_flat.php4?ecno=3.1.3.2 3.1.3.2]) is an enzyme which removes phosphate from other molecules during digestion.  It catalyzes the conversion of orthophosphoric monoester and H<sub>2</sub>O to alcohol and phosphoric acid.  The enzyme is most effective in acidic environment, hence its name.<ref>PMID:11950951</ref><br />
'''Acid phosphatase''' (ACP, EC number [http://www.brenda-enzymes.info/php/result_flat.php4?ecno=3.1.3.2 3.1.3.2]) is an enzyme which removes phosphate from other molecules during digestion.  It catalyzes the conversion of orthophosphoric monoester and H<sub>2</sub>O to alcohol and phosphoric acid.  The enzyme is most effective in acidic environment, hence its name.<ref>PMID:11950951</ref><br />
*'''Prostatic ACP''' (PSAP) is produced by the prostate.<br />
*'''Prostatic ACP''' (PSAP) is produced by the prostate<ref>PMID:20645695</ref>.<br />
*'''Purple ACP''' (PAP) or '''tartrate-resistant ACP''' contains a dinuclear Fe center and their oxidized form in solution maintains a purple color. <br />
*'''Purple ACP''' (PAP) or '''tartrate-resistant ACP''' contains a dinuclear Fe center and their oxidized form in solution maintains a purple color<ref>PMID:34402946</ref>. <br />
*'''Histidine ACP''' (HAP) catalyzes the transfer of phosphoryl group using an active-site histidine.<br />
*'''Histidine ACP''' (HAP) catalyzes the transfer of phosphoryl group using an active-site histidine<ref>PMID:18092946</ref>
*'''BA42'''
*'''N-acetylneuraminic ACP''' is involved in the biosynthesis of N-acetylneuraminate.<br />
*'''Lysophosphatidic ACP''' is involved in signal transduction and storage lipid synthesis<ref>PMID:20045079</ref>.<br />
*'''BA42''' belongs to the TPM protein family from Pfam. The TPM domain family is named after the three founding proteins TLP18.3, Psb32 and MOLO-1. TPM domains have a characteristic fold <scene name='71/715464/Cv/2'>(αβαβαββαα or βαβαββαα)</scene> composed of α helices (3+3<ref>pmid 21908686</ref> or 2+3<ref>pmid 22198206</ref>) flanking four central β strands. The TPM fold has not been found in other protein domains to date. TPM was previously referred to as "DUF477" and "Repair_PSII".


BA42 belongs to the TPM protein family from Pfam. The TPM domain family is named after the three founding proteins TLP18.3, Psb32 and MOLO-1. TPM domains have a characteristic fold <scene name='71/715464/Cv/2'>(αβαβαββαα or βαβαββαα)</scene> composed of α helices (3+3<ref>pmid 21908686</ref> or 2+3<ref>pmid 22198206</ref>) flanking four central β strands. The TPM fold has not been found in other protein domains to date. TPM was previously referred to as "DUF477" and "Repair_PSII".
ACP contains 3 classes:<br />
*'''Class A''' is nonspecific and catalyses the dephospho rylation of orthophosphoric monoesters and transphosphorylation<br />.
*'''Class B''' dephosphorylates several phosphoric monsters like 3" and 5'- nucleotides<br />.
*'''Class C''' is nonspecific and does not modify lipids<br />.


In plants, the TPM domain-containing proteins TLP18.3 and Psb32 that have been implicated in the photosystem II (PSII) repair cycle. It may be involved in the regulation of synthesis/degradation of the D1 protein of the PSII core and in the assembly of PSII monomers into dimers in the grana stacks.<ref>pmid 17576201</ref>
In plants, the TPM domain-containing proteins TLP18.3 and Psb32 that have been implicated in the photosystem II (PSII) repair cycle. It may be involved in the regulation of synthesis/degradation of the D1 protein of the PSII core and in the assembly of PSII monomers into dimers in the grana stacks.<ref>pmid 17576201</ref>

Latest revision as of 09:24, 20 May 2024

Antarctic bacterium protein BA42 complex with Ca2+ ions (PDB code 4oa3)

Drag the structure with the mouse to rotate

References

Proteopedia Page Contributors and Editors (what is this?)

Michal Harel, Alexander Berchansky, Joel L. Sussman