DIVERSITY OF A RIBONUCLEOPROTEIN FAMILY IN TOBACCO CHLOROPLASTS - 2 NEW CHLOROPLAST RIBONUCLEOPROTEINS AND A PHYLOGENETIC TREE OF 10 CHLOROPLAST RNA-BINDING DOMAINS
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YE, LZ
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NAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPANNAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPAN
YE, LZ
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LI, YQ
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NAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPANNAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPAN
LI, YQ
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FUKAMIKOBAYASHI, K
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NAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPANNAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPAN
FUKAMIKOBAYASHI, K
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GO, M
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NAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPANNAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPAN
GO, M
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KONISHI, T
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NAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPANNAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPAN
KONISHI, T
[1
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WATANABE, A
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NAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPANNAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPAN
WATANABE, A
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SUGIURA, M
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NAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPANNAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPAN
SUGIURA, M
[1
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[1] NAGOYA UNIV,BIOCHEM REGULAT RES INST,NAGOYA 46401,JAPAN
Two new ribonucleoproteins (RNPs) have been identified from a tobacco chloroplast lysate. These two proteins (cp29A and cp29B) are nuclear-encoded and have a less affinity to single-stranded DNA as compared with three other chloroplast RNPs (cp28, cp31 and cp33) previously isolated. DNA sequencing revealed that both contain two consensus sequence-type homologous RNA-binding domains (CS-RBDs) and a very acidic amino-terminal domain but shorter than that of cp28, cp31 and cp33. Comparison of cp29A and cp29B showed a 19 amino acid insertion in the region separating the two CS-RBDs in cp29B. This insertion results in three tandem repeats of a glycine-rich sequence of 10 amino acids, which is a novel feature in RNPs. The two proteins are encoded by different single nuclear genes and no alternatively spliced transcripts could be identified. We constructed a phylogenetic tree for the ten chloroplast CS-RBDs. These results suggest that there is a sizable RNP family in chloroplasts and the diversity was mainly generated through a series of gene duplications rather than through alternative pre-mRNA splicing. The gene for cp29B contains three introns. The first and second introns interrupt the first CS-RBD and the third intron does the second CS-RBD. The position of the first intron site is the same as that in the human hnRNP A1 protein gene.