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2.7.7.19: polynucleotide adenylyltransferase

This is an abbreviated version!
For detailed information about polynucleotide adenylyltransferase, go to the full flat file.

Word Map on EC 2.7.7.19

Reaction

ATP
+
RNAn
=
diphosphate
+
RNAn+3'-A

Synonyms

AAS, adenosine triphosphate:ribonucleic acid adenylyltransferase, AMP polynucleotidylexotransferase, ATP-polynucleotide adenylyltransferase, ATP:polynucleotidylexotransferase, CC-adding enzyme, Cid1, Cid14, FAM46A, FAM46B, FAM46C, FAM46D, germline development 2, GLD-2, GLD2, GLD4, Hs2, MTPAP, neo-PAP, non-canonical poly(A) RNA polymerase PAPD7, NTP polymerase, nuclear poly(A) polymerase 1, nuclear speckle targeted PIPKIalpha regulated-poly(A) polymerase, nucleotidyltransferase, polyadenylate, PAP, PAP I, Pap II, PAP1, Pap1p, PAPalpha, PAPbeta, PapD1, PapD5, PAPD7, PAPgamma, PAPOLA, PAPOLB/TPAP, PAPOLG, PAPS1, PAPS2, PAPS4, PcnB, pcnB2, pcnB2 aq_2158, poly A polymerase, poly(A) hydrolase, poly(A) polymerase, poly(A) polymerase gamma, poly(A) polymerase I, poly(A) polymerase II, poly(A) RNA polymerase protein 1, poly(A) synthetase, poly(A)-polymerase, poly(A)polymerase I, polyA polymerase, polyadenylate nucleotidyltransferase, polyadenylate polymerase, polyadenylate synthetase, polyadenylic acid polymerase, polyadenylic polymerase, poly[A] polymerase beta, RNA adenylating enzyme, RNA formation factors, PF1, RNA poly(A) polymerase, Star-PAP, Tb927.3.3160, Tb927.7.3780, terminal riboadenylate transferase, Tpap, Trf5, Trf5p, TUT1, TUTase1, VP55, Wisp, yPAP, ZCCHC6

ECTree

     2 Transferases
         2.7 Transferring phosphorus-containing groups
             2.7.7 Nucleotidyltransferases
                2.7.7.19 polynucleotide adenylyltransferase

General Stability

General Stability on EC 2.7.7.19 - polynucleotide adenylyltransferase

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GENERAL STABILITY
ORGANISM
UNIPROT
LITERATURE
a decay of PAP activity with a half-life of approximately 2 h (on ice) is observed when Nonidet-P 40 is omitted from the enzyme storage solution
-
freezing and thawing accelerates inactivation
-
substrates poly(A) and Mg-ATP induce the conformational change, resulting in stabilization of the closed enzyme state and enabling catalysis
the protein undergoes structural modifications upon RNA binding, although the interaction does not significantly modify the stability of the protein
-