The genes described below are part of the yeast mating signal transduction pathway that signals the presence of extracellular alpha pheromone to the nucleus. These gene are listed in the order they function in the pathway. STE3 encodes alpha pheromone receptor STE4 encodes the ß subunit of a heterotrimeric G protein STE7 encodes a protein kinase STE12 encodes a transcription factor Loss-of function-mutations in any of these genes are sterile. In addition, gain-of-function mutations can be isolated in these genes. For which gene would a loss of function mutation suppress gain-of-function mutations in any of the other three genes. OSTE3 OSTE7 OSTE12 OSTE4

Human Anatomy & Physiology (11th Edition)
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Author:Elaine N. Marieb, Katja N. Hoehn
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The genes described below are part of the yeast mating signal transduction pathway that signals the presence of extracellular alpha pheromone to the nucleus. These genes
are listed in the order they function in the pathway.
STE3 encodes alpha pheromone receptor
STE4 encodes the ß subunit of a heterotrimeric G protein
STE7 encodes a protein kinase
STE12 encodes a transcription factor
Loss-of function-mutations in any of these genes are sterile. In addition, gain-of-function mutations can be isolated in these genes. For which gene would a loss of function
mutation suppress gain-of-function mutations in any of the other three genes.
STE3
STE7
STE12
STE4
Transcribed Image Text:The genes described below are part of the yeast mating signal transduction pathway that signals the presence of extracellular alpha pheromone to the nucleus. These genes are listed in the order they function in the pathway. STE3 encodes alpha pheromone receptor STE4 encodes the ß subunit of a heterotrimeric G protein STE7 encodes a protein kinase STE12 encodes a transcription factor Loss-of function-mutations in any of these genes are sterile. In addition, gain-of-function mutations can be isolated in these genes. For which gene would a loss of function mutation suppress gain-of-function mutations in any of the other three genes. STE3 STE7 STE12 STE4
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