Literature DB >> 28138016

Protein Degradation Rate in Arabidopsis thaliana Leaf Growth and Development.

Lei Li1, Clark J Nelson1, Josua Trösch1, Ian Castleden1, Shaobai Huang1, A Harvey Millar2.   

Abstract

We applied 15N labeling approaches to leaves of the Arabidopsis thaliana rosette to characterize their protein degradation rate and understand its determinants. The progressive labeling of new peptides with 15N and measuring the decrease in the abundance of >60,000 existing peptides over time allowed us to define the degradation rate of 1228 proteins in vivo. We show that Arabidopsis protein half-lives vary from several hours to several months based on the exponential constant of the decay rate for each protein. This rate was calculated from the relative isotope abundance of each peptide and the fold change in protein abundance during growth. Protein complex membership and specific protein domains were found to be strong predictors of degradation rate, while N-end amino acid, hydrophobicity, or aggregation propensity of proteins were not. We discovered rapidly degrading subunits in a variety of protein complexes in plastids and identified the set of plant proteins whose degradation rate changed in different leaves of the rosette and correlated with leaf growth rate. From this information, we have calculated the protein turnover energy costs in different leaves and their key determinants within the proteome.
© 2017 American Society of Plant Biologists. All rights reserved.

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Year:  2017        PMID: 28138016      PMCID: PMC5354193          DOI: 10.1105/tpc.16.00768

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  89 in total

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Review 4.  Division and dynamic morphology of plastids.

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5.  Multiplex micro-respiratory measurements of Arabidopsis tissues.

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7.  Universality and structure of the N-end rule.

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  64 in total

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Review 4.  Engineering Strategies to Boost Crop Productivity by Cutting Respiratory Carbon Loss.

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7.  Chloroplast Chaperonin-Mediated Targeting of a Thylakoid Membrane Protein.

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Review 8.  What makes ribosomes tick?

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Review 9.  Chloroplast Translation: Structural and Functional Organization, Operational Control, and Regulation.

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