SummaryCancer progresses through distinct stages, and mouse models recapitulating traits of this progression are frequently used to explore genetic, morphological, and pharmacological aspects of tumor development. To complement genomic investigations of this process, we here quantify phosphoproteomic changes in skin cancer development using the SILAC mouse technology coupled to high-resolution mass spectrometry. We distill protein expression signatures from our data that distinguish between skin cancer stages. A distinct phosphoproteome of the two stages of cancer progression is identified that correlates with perturbed cell growth and implicates cell adhesion as a major driver of malignancy. Importantly, integrated analysis of phosphoprote...
Cellular responses to DNA-damaging agents involve the activation of various DNA damage signaling and...
The tumor microenvironment plays key roles in cancer biology, but its impact on the regulation of si...
Thesis (Ph.D.)--University of Washington, 2016-05Signal transduction is the process by which cells c...
Cancer progresses through distinct stages, and mouse models recapitulating traits of this progressio...
SummaryCancer progresses through distinct stages, and mouse models recapitulating traits of this pro...
Cancer progresses through distinct stages, and mouse models recapitulating traits of this progressio...
Cancer progresses through distinct stages, and mouse models recapitulating traits of this progressio...
Cancer progresses through distinct stages, and mouse models recapitulating traits of this progressio...
Kinases play a prominent role in tumor development, pointing to the presence of specific phosphoryla...
An analysis of phosphorylation changes that occur during cancer progression would provide insights i...
Tyrosine kinases (TKs) are central regulators in cellular activities and perturbations of TK signali...
This thesis describes the application of proteomics technologies to get insight into several aspects...
Somatic mutations have been extensively characterized in breast cancer, but the effects of these gen...
Proteins are the effectors of cellular functions and the constituting elements of cellular signalin...
The understanding of carcinogenesis and tumor progression on a molecular basis needs a detailed stud...
Cellular responses to DNA-damaging agents involve the activation of various DNA damage signaling and...
The tumor microenvironment plays key roles in cancer biology, but its impact on the regulation of si...
Thesis (Ph.D.)--University of Washington, 2016-05Signal transduction is the process by which cells c...
Cancer progresses through distinct stages, and mouse models recapitulating traits of this progressio...
SummaryCancer progresses through distinct stages, and mouse models recapitulating traits of this pro...
Cancer progresses through distinct stages, and mouse models recapitulating traits of this progressio...
Cancer progresses through distinct stages, and mouse models recapitulating traits of this progressio...
Cancer progresses through distinct stages, and mouse models recapitulating traits of this progressio...
Kinases play a prominent role in tumor development, pointing to the presence of specific phosphoryla...
An analysis of phosphorylation changes that occur during cancer progression would provide insights i...
Tyrosine kinases (TKs) are central regulators in cellular activities and perturbations of TK signali...
This thesis describes the application of proteomics technologies to get insight into several aspects...
Somatic mutations have been extensively characterized in breast cancer, but the effects of these gen...
Proteins are the effectors of cellular functions and the constituting elements of cellular signalin...
The understanding of carcinogenesis and tumor progression on a molecular basis needs a detailed stud...
Cellular responses to DNA-damaging agents involve the activation of various DNA damage signaling and...
The tumor microenvironment plays key roles in cancer biology, but its impact on the regulation of si...
Thesis (Ph.D.)--University of Washington, 2016-05Signal transduction is the process by which cells c...