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July 5, 2002Science354 citations

An Essential Role of N-Terminal Arginylation in Cardiovascular Development

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YKYong Tae KwonAKAnna KashinaIDIlia V. Davydov

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Abstract

The enzymatic conjugation of arginine to the N-termini of proteins is a part of the ubiquitin-dependent N-end rule pathway of protein degradation. In mammals, three N-terminal residues-aspartate, glutamate, and cysteine-are substrates for arginylation. The mouse ATE1 gene encodes a family of Arg-tRNA-protein transferases (R-transferases) that mediate N-terminal arginylation. We constructed ATE1-lacking mouse strains and found that ATE1-/- embryos die with defects in heart development and in angiogenic remodeling of the early vascular plexus. Through biochemical analyses, we show that N-terminal cysteine, in contrast to N-terminal aspartate and glutamate, is oxidized before its arginylation by R-transferase, suggesting that the arginylation branch of the N-end rule pathway functions as an oxygen sensor.

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Cite This Study

Kwon et al. (2002) studied this question.

synapsesocial.com/papers/6a45abc945fd8cfa32f8292ehttps://doi.org/10.1126/science.1069531
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