4.6 Article

N-terminal methionine excision of proteins creates tertiary destabilizing N-degrons of the Arg/N-end rule pathway

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 294, 期 12, 页码 4464-4476

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.RA118.006913

关键词

ubiquitin; ubiquitin ligase; protein degradation; proteasome; acetylation; N-end rule; N-terminal acetylation; N-terminal amidase; N-terminal arginylation; N-terminal methionine excision

资金

  1. Samsung Science and Technology Foundation [SSTF-BA1401-17]
  2. National Research Foundation of Korea (NRF) - Korean Government (MSIP) [NRF-2017R1A5A1015366]
  3. BK21 Plus Program
  4. POSCO Green Science and Innovation Grant
  5. National Research Foundation of Korea [21A20131212415] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

All organisms begin protein synthesis with methionine (Met). The resulting initiator Met of nascent proteins is irreversibly processed by Met aminopeptidases (MetAPs). N-terminal (Nt) Met excision (NME) is an evolutionarily conserved and essential process operating on up to two-thirds of proteins. However, the universal function of NME remains largely unknown. MetAPs have a well-known processing preference for Nt-Met with Ala, Ser, Gly, Thr, Cys, Pro, or Val at position 2, but using CHX-chase assays to assess protein degradation in yeast cells, as well as protein-binding and RT-qPCR assays, we demonstrate here that NME also occurs on nascent proteins bearing Met-Asn or Met-Gln at their N termini. We found that the NME at these termini exposes the tertiary destabilizing Nt residues (Asn or Gln) of the Arg/N-end rule pathway, which degrades proteins according to the composition of their Nt residues. We also identified a yeast DNA repair protein, MQ-Rad16, bearing a Met-Gln N terminus, as well as a human tropomyosin-receptor kinase-fused gene (TFG) protein, MN-TFG, bearing a Met-Asn N terminus as physiological, MetAP-processed Arg/N-end rule substrates. Furthermore, we show that the loss of the components of the Arg/N-end rule pathway substantially suppresses the growth defects of naa20 yeast cells lacking the catalytic subunit of NatB Nt acetylase at 37 degrees C. Collectively, the results of our study reveal that NME is a key upstream step for the creation of the Arg/N-end rule substrates bearing tertiary destabilizing residues in vivo.

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