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L-Arg-tRNA + apolipoprotein A-I
tRNAArg + L-Arg-[apolipoprotein A-I]
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?
L-Arg-tRNAArg + alpha-1-antitrypsin
tRNAArg + L-Arg-[alpha-1-antitrypsin]
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?
L-Arg-tRNAArg + apolipoprotein E
tRNAArg + L-Arg-[apolipoprotein E]
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?
L-Arg-tRNAArg + calreticulin
tRNAArg + L-Arg-[calreticulin]
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?
L-Arg-tRNAArg + contrapsin-like protease inhibitor-3
tRNAArg + L-Arg-[contrapsin-like protease inhibitor-3]
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?
L-Arg-tRNAArg + glucose-related protein 78
tRNAArg + L-Arg-[glucose-related protein 78]
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?
L-Arg-tRNAArg + hemopexin
tRNAArg + L-Arg-[hemopexin]
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?
L-Arg-tRNAArg + protein-disulfide isomerase
tRNAArg + L-Arg-[protein-disulfide isomerase]
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
L-arginyl-tRNAArg + alpha-synuclein
tRNAArg + L-arginyl-[alpha-synuclein]
alpha-syn is arginylated in vitro and in vivo
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?
L-arginyl-tRNAArg + beta-actin
tRNAArg + L-arginyl-[beta-actin]
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?
L-arginyl-tRNAArg + BiP/GRP78 protein
tRNAArg + L-arginyl-[BiP/GRP78 protein]
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?
L-arginyl-tRNAArg + calreticulin
tRNAArg + L-arginyl-[calreticulin]
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?
L-arginyl-tRNAArg + ERF-VII peptide
tRNAArg + L-arginyl-[ERF-VII peptide]
after N-terminal Cys-sulfinic acid formation on ERF-VII peptide through plant cysteine oxidase. An ERF-VII peptide with an N-terminal Gly does not accept Arg, whereas an N-terminal Asp accepts Arg, independent of the presence of PCO1 or 4. A peptide comprising an N-terminal Cys-sulfonic acid is also shown to be a substrate for ATE1, again independent of the presence of PCO1 or 4. Proposed arginylation requirements for the Arg/Cys branch of the N-end rule pathway
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
L-arginyl-tRNAArg + protein disulfide isomerase
tRNAArg + L-arginyl-[protein disulfide isomerase]
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?
L-arginyl-tRNAArg + RGS4 protein
tRNAArg + L-arginyl-[RGS4 protein]
additional information
?
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L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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involved in ubiquitin mediated protein degradation
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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possibly involved in degradation of proteins with acidic NH2-termini
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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catalyzes post-translational ribosome-independent modification of certain acceptor proteins
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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involved in ubiquitin mediated protein degradation
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?
L-arginyl-tRNAArg + acceptor protein
tRNAArg + L-arginyl-[acceptor protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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the enzyme catalyzes mid-chain arginylation of proteins at side chain carboxylates in vivo. N-terminal arginylation of the peptide substrates occurs by the alpha amino group
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + protein
tRNAArg + L-arginyl-[protein]
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?
L-arginyl-tRNAArg + RGS4 protein
tRNAArg + L-arginyl-[RGS4 protein]
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?
L-arginyl-tRNAArg + RGS4 protein
tRNAArg + L-arginyl-[RGS4 protein]
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?
additional information
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the Arg/N-end rule-mediated autophagic flux regulator might be a direct substrate of ATE1, rather than UBR1 or UBR2
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additional information
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the Arg/N-end rule-mediated autophagic flux regulator might be a direct substrate of ATE1, rather than UBR1 or UBR2
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additional information
?
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substrates may reach the cytosol by retro-translocation from the endoplasmic reticulum and then be arginylated
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?
additional information
?
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interaction of enzyme and N-terminal domain of topoisomerase II. Role in Ate1 in modulating the level of topoisomerase through the cell cycle
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?