How the messenger got its tail: addition of poly(A) in the nucleus.

[1]  J. Butler,et al.  RNA processing in vitro produces mature 3' ends of a variety of Saccharomyces cerevisiae mRNAs , 1990, Molecular and cellular biology.

[2]  M. Wickens,et al.  Polyadenylation of mRNA: minimal substrates and a requirement for the 2' hydroxyl of the U in AAUAAA , 1990, Molecular and cellular biology.

[3]  M. Wickens,et al.  The enzyme that adds poly(A) to mRNAs is a classical poly(A) polymerase , 1990, Molecular and cellular biology.

[4]  M. Wickens,et al.  Polyadenylation-specific complexes undergo a transition early in the polymerization of a poly(A) tail , 1990, Molecular and cellular biology.

[5]  J. Nevins,et al.  An ordered pathway of assembly of components required for polyadenylation site recognition and processing. , 1989, Genes & development.

[6]  N. Proudfoot,et al.  RNA 3'-end formation. , 1989, Genes & development.

[7]  J. Manley,et al.  Four factors are required for 3'-end cleavage of pre-mRNAs. , 1989, Genes & development.

[8]  J. Manley,et al.  Multiple forms of poly(A) polymerases purified from HeLa cells function in specific mRNA 3'-end formation , 1989, Molecular and cellular biology.

[9]  M. Wickens,et al.  Two phases in the addition of a poly(A) tail. , 1989, Genes & development.

[10]  T. Shenk,et al.  Functional analysis of point mutations in the AAUAAA motif of the SV40 late polyadenylation signal. , 1989, Nucleic acids research.

[11]  S. Jacob,et al.  Role of poly(A) polymerase in the cleavage and polyadenylation of mRNA precursor , 1989, Molecular and cellular biology.

[12]  G. Christofori,et al.  Poly(A) polymerase purified from HeLa cell nuclear extract is required for both cleavage and polyadenylation of pre-mRNA in vitro , 1989, Molecular and cellular biology.

[13]  J. Butler,et al.  RNA processing generates the mature 3' end of yeast CYC1 messenger RNA in vitro. , 1988, Science.

[14]  G. Christofori,et al.  3′ cleavage and polyadenylation of mRNA precursors in vitro requires a poly(A) polymerase, a cleavage factor, and a snRNP , 1988, Cell.

[15]  N. Proudfoot,et al.  A beginning to the biochemistry of polyadenylation. , 1988, Trends in genetics : TIG.

[16]  J. Manley,et al.  Polyadenylation of mRNA precursors. , 1988, Biochimica et biophysica acta.

[17]  J. Manley,et al.  Separation and characterization of a poly(A) polymerase and a cleavage/specificity factor required for pre-mRNA polyadenylation , 1988, Cell.

[18]  M. Wickens,et al.  Analysis of mRNA 3′ end formation by modification interference: the only modifications which prevent processing lie in AAUAAA and the poly(A) site. , 1987, The EMBO journal.

[19]  M. Wickens,et al.  Products of in vitro cleavage and polyadenylation of simian virus 40 late pre-mRNAs , 1987, Molecular and cellular biology.

[20]  C. Moore,et al.  Analysis of RNA cleavage at the adenovirus‐2 L3 polyadenylation site. , 1986, The EMBO journal.

[21]  M. Wickens,et al.  The AAUAAA sequence is required both for cleavage and for polyadenylation of simian virus 40 pre-mRNA in vitro , 1986, Molecular and cellular biology.

[22]  J. Steitz,et al.  A small nuclear ribonucleoprotein associates with the AAUAAA polyadenylation signal in vitro , 1986, Cell.

[23]  M. Birnstiel,et al.  Compensatory mutations suggest that base-pairing with a small nuclear RNA is required to form the 3′ end of H3 messenger RNA , 1986, Nature.

[24]  P. Sharp,et al.  Accurate cleavage and polyadenylation of exogenous RNA substrate , 1985, Cell.

[25]  J. Manley,et al.  RNA sequence containing hexanucleotide AAUAAA directs efficient mRNA polyadenylation in vitro , 1985, Molecular and cellular biology.

[26]  S. Jacob Enzymes of nucleic acid synthesis and modification , 1983 .

[27]  J. Nevins,et al.  Steps in the processing of Ad2 mRNA: Poly(A)+ Nuclear sequences are conserved and poly(A) addition precedes splicing , 1978, Cell.

[28]  M. Edmonds,et al.  A poly(A) polymerase from calf thymus. Characterization of the reaction product and the primer requirement. , 1973, The Journal of biological chemistry.

[29]  S. Colowick,et al.  Methods in Enzymology , Vol , 1966 .