Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and virulence of …

MD Leach, DA Stead, E Argo… - Molecular …, 2011 - Wiley Online Library
Post‐translational modifications of proteins play key roles in eukaryotic growth,
differentiation and environmental adaptation. In model systems the ubiquitination of specific …

[PDF][PDF] Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and …

MD Leach, DA Stead, E Argo… - Molecular …, 2011 - researchgate.net
Post-translational modifications of proteins play key roles in eukaryotic growth, differentiation
and environmental adaptation. In model systems the ubiquitination of specific proteins …

Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and virulence of …

MD Leach, DA Stead, E Argo, DM MacCallum… - 2011 - cabidigitallibrary.org
Post-translational modifications of proteins play key roles in eukaryotic growth, differentiation
and environmental adaptation. In model systems the ubiquitination of specific proteins …

[PDF][PDF] Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and …

MD Leach, DA Stead, E Argo, DM MacCallum… - Molecular …, 2011 - Citeseer
Post-translational modifications of proteins play key roles in eukaryotic growth, differentiation
and environmental adaptation. In model systems the ubiquitination of specific proteins …

Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and virulence of …

MD Leach, DA Stead, E Argo, DM MacCallum… - Molecular …, 2011 - infona.pl
Post‐translational modifications of proteins play key roles in eukaryotic growth,
differentiation and environmental adaptation. In model systems the ubiquitination of specific …

[PDF][PDF] Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and …

MD Leach, DA Stead, EA Argo… - Molecular …, 2011 - aura.abdn.ac.uk
Post-translational modifications of proteins play key roles in eukaryotic growth, differentiation
and environmental adaptation. In model systems the ubiquitination of specific proteins …

Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and virulence of …

MD Leach, DA Stead, EA Argo… - Molecular …, 2011 - abdn.elsevierpure.com
Post-translational modifications of proteins play key roles in eukaryotic growth, differentiation
and environmental adaptation. In model systems the ubiquitination of specific proteins …

[HTML][HTML] Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and …

MD Leach, DA Stead, E Argo, DM MacCallum… - Molecular …, 2011 - ncbi.nlm.nih.gov
Post-translational modifications of proteins play key roles in eukaryotic growth, differentiation
and environmental adaptation. In model systems the ubiquitination of specific proteins …

[PDF][PDF] Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and …

MD Leach, DA Stead, E Argo, DM MacCallum… - Molecular …, 2011 - academia.edu
Post-translational modifications of proteins play key roles in eukaryotic growth, differentiation
and environmental adaptation. In model systems the ubiquitination of specific proteins …

Molecular and proteomic analyses highlight the importance of ubiquitination for the stress resistance, metabolic adaptation, morphogenetic regulation and virulence of …

MD Leach, DA Stead, E Argo… - Molecular …, 2011 - pubmed.ncbi.nlm.nih.gov
Post-translational modifications of proteins play key roles in eukaryotic growth, differentiation
and environmental adaptation. In model systems the ubiquitination of specific proteins …