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1 RNAs and bona fide tRNAs is monitored by the CCA-adding enzyme.
2 pin down the unusual evolution of eukaryotic CCA-adding enzymes.
3 nd the eubacterial Escherichia coli class II CCA-adding enzymes.
4 as to be added post-transcriptionally by the CCA-adding enzyme, a specialized nucleotidyltransferase.
5                       Intriguingly, with the CCA-adding enzyme acting as a molecular vise, the RNAs p
6                                     The tRNA CCA-adding enzyme adds CCA stepwise to immature transfer
7                                          The CCA-adding enzyme adds CCA to the 3'-end of tRNA one nuc
8  not encoded, but must be synthesized by the CCA-adding enzyme after 3' end cleavage.
9 ria and some bacteria and must be added by a CCA-adding enzyme after removal of the 3' end trailer.
10    The eubacterial, eukaryotic, and archaeal CCA-adding enzymes all share a single active-site signat
11 ses, TRF4/sigma-family polymerases, archaeal CCA-adding enzymes and uridilyltransferases from trypano
12 s distinct from the mRNA poly(A) polymerase, CCA-adding enzyme, and nonspecific terminal transferase.
13 llest efficient substrate for class I and II CCA-adding enzymes, and that CCA addition to U2 snRNA ma
14        Transfer RNA nucleotidyltransferases (CCA-adding enzymes) are responsible for the maturation o
15 olobus shibatae and Methanococcus jannaschii CCA-adding enzymes, are also capable of poly(C) synthesi
16                                          The CCA-adding enzyme ATP(CTP):tRNA nucleotidyltransferase b
17 s faithfully constructed and repaired by the CCA-adding enzyme (ATP(CTP):tRNA nucleotidyltransferase)
18 d, and sometimes constructed de novo, by the CCA-adding enzyme [ATP(CTP):tRNA nucleotidyltransferase]
19                                          The CCA-adding enzyme [ATP(CTP):tRNA nucleotidyltransferase]
20                                          The CCA-adding enzymes [ATP(CTP):tRNA nucleotidyl transferas
21                                          The CCA-adding enzymes [ATP(CTP):tRNA nucleotidyl transferas
22                                              CCA-adding enzymes [ATP(CTP):tRNA nucleotidyltransferase
23                                              CCA-adding enzymes build and repair the 3'-terminal CCA
24                                          The CCA-adding enzyme builds and repairs the 3' terminus of
25 U2 snRNAs were good substrates for the human CCA-adding enzyme but were inactive with the Escherichia
26                                              CCA-adding enzymes catalyze the addition of CCA onto the
27 logous and heterologous class I and class II CCA-adding enzymes could add 3'-terminal A, CA, or CCA t
28 idyl transferase superfamily, which includes CCA-adding enzymes, DNA polymerases and eukaryotic nucle
29 tor stem remains fixed on the surface of the CCA-adding enzyme during C and A addition.
30 ic mutations in TRNT1, the gene encoding the CCA-adding enzyme essential for maturation of both nucle
31 termined the crystal structures of a class I CCA-adding enzyme from Archeoglobus fulgidus (AfCCA) and
32 e 3.0 A resolution crystal structures of the CCA-adding enzyme from Bacillus stearothermophilus and i
33                            Intriguingly, the CCA-adding enzyme from the archaeon Sulfolobus shibatae
34                          Until recently, all CCA-adding enzymes from all three kingdoms appeared to b
35                 All previously characterized CCA-adding enzymes from all three kingdoms are single po
36 ing CCA to the 3' ends of these transcripts, CCA-adding enzymes from all three kingdoms of life add C
37        Intriguingly, the Thermatoga maritima CCA-adding enzyme groups with the A-adding enzymes, sugg
38 e ancestral and the horizontally transferred CCA-adding enzymes have survived.
39                We were able to transform the CCA-adding enzyme into a (U,G)-adding enzyme that incorp
40 e also transformed the B. stearothermophilus CCA-adding enzyme into a dCdCdA-adding enzyme by mutatin
41 and we transformed the B. stearothermophilus CCA-adding enzyme into a poly(C,A) polymerase by mutatio
42                             We show that the CCA-adding enzymes of animals originated from a horizont
43  of the class I archaeal Sulfolobus shibatae CCA-adding enzyme on eukaryotic poly(A) polymerase and m
44                            We found that the CCA-adding enzyme plays a key role in tRNA quality contr
45                                              CCA-adding enzymes polymerize CCA onto the 3' terminus o
46                                          The CCA-adding enzyme repairs the 3'-terminal CCA sequence o
47  by the class II Bacillus stearothermophilus CCA-adding enzyme structure, we introduced mutations des
48 dies show that the class II Escherichia coli CCA-adding enzyme synthesizes poly(C) when incubated wit
49                                          The CCA-adding enzyme (tRNA nucleotidyltransferase) builds a
50                                          The CCA-adding enzyme (tRNA nucleotidyltransferase) synthesi
51                                          The CCA-adding enzyme, which builds and repairs the 3' termi

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