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List of works by Peter M Pryciak

A Membrane Binding Domain in the Ste5 Scaffold Synergizes with Gβγ Binding to Control Localization and Signaling in Pheromone Response

article

A docking interface in the cyclin Cln2 promotes multi-site phosphorylation of substrates and timely cell-cycle entry.

scientific article

Cdc42 regulation of kinase activity and signaling by the yeast p21-activated kinase Ste20.

scientific article

Cyclin-Specific Docking Motifs Promote Phosphorylation of Yeast Signaling Proteins by G1/S Cdk Complexes

scientific article published on September 22, 2011

Designing new cellular signaling pathways.

scientific article published on March 2009

Distinct roles for two Galpha-Gbeta interfaces in cell polarity control by a yeast heterotrimeric G protein

scientific article

Dual role for membrane localization in yeast MAP kinase cascade activation and its contribution to signaling fidelity.

scientific article

Functional overlap among distinct G1/S inhibitory pathways allows robust G1 arrest by yeast mating pheromones.

scientific article published on 02 October 2013

Interaction with the SH3 domain protein Bem1 regulates signaling by the Saccharomyces cerevisiae p21-activated kinase Ste20

scientific article

MAP Kinases Bite Back

scientific article published on 01 October 2001

Membrane localization of scaffold proteins promotes graded signaling in the yeast MAP kinase cascade

scientific article published on August 2008

Membrane recruitment of the kinase cascade scaffold protein Ste5 by the Gbetagamma complex underlies activation of the yeast pheromone response pathway

scientific article

Nucleosomes, DNA-binding proteins, and DNA sequence modulate retroviral integration target site selection

scientific article published on May 29, 1992

Regulation of cyclin-substrate docking by a G1 arrest signaling pathway and the Cdk inhibitor Far1.

scientific article

Simian virus 40 minichromosomes as targets for retroviral integration in vivo

scientific article published on October 1, 1992

Systems biology. Customized signaling circuits.

scientific article