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A. Cléry, M. Blatter, and F.H.T. Allain.
RNA recognition motifs: boring? Not quite.
Current Opinion in Structural Biology, 18(3):290-298, 2008.
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G. Dreyfuss, MS Swanson, and S. Pinol-Roma.
Heterogeneous nuclear ribonucleoprotein particles and the pathway of
mRNA formation.
Trends Biochem Sci, 13(3):86-91, 1988.
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C.A. Kim and J.U. Bowie.
SAM domains: uniform structure, diversity of function.
Trends in Biochemical Sciences, 28(12):625-628, 2003.
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C. Maris, C. Dominguez, and F.H.T. Allain.
The RNA recognition motif, a plastic RNA-binding platform to
regulate post-transcriptional gene expression.
FEBS Journal, 272(9):2118-2131, 2005.
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K. Maruyama, N. Sato, and N. Ohta.
Conservation of structure and cold-regulation of RNA-binding
proteins in cyanobacteria: probable convergent evolution with eukaryotic
glycine-rich RNA-binding proteins.
Nucleic Acids Research, 27(9):2029-2036.
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CP PONTING.
SAM: A novel motif in yeast sterile and Drosophila polyhomeotic
proteins.
Protein Science, 4(9):1928, 1995.
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CP Ponting, L. Aravind, J. Schultz, P. Bork, and EV Koonin.
Eukaryotic Signalling Domain Homologues in Archaea and Bacteria.
Ancient Ancestry and Horizontal Gene Transfer.
Journal of Molecular Biology, 289(4):729-745, 1999.
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I.C.P.C.M. Processing.
The RNA-binding SAM domain of Smaug defines a new family of
post-transcriptional regulators.
Nature Structural Biology, 10:614-621, 2003.
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J. SCHULTZ, CP PONTING, K. HOFMANN, and P. BORK.
SAM as a protein interaction domain involved in developmental
regulation.
Protein Science, 6(1):249, 1997.
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H. Siomi, M.J. Matunis, W.M. Michael, and G. Dreyfuss.
The pre-mRNA binding K protein contains a novel evolutionarily
conserved motif.
NUCLEIC ACIDS RESEARCH, 21:1193-1193, 1993.
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X. Wang, P.D. Zamore, and T.M.T. Hall.
Crystal Structure of a Pumilio Homology Domain.
Molecular Cell, 7(4):855-865, 2001.
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PD Zamore, JR Williamson, and R. Lehmann.
The Pumilio protein binds RNA through a conserved domain that
defines a new class of RNA-binding proteins, 1997.
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2009-03-18