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Characterization of two second-site mutations preventing wild type protein aggregation caused by a dominant negative
Pilar Eraso1, Francisco Portillo, María J Mazón
1Departamento de Bioquímica, Consejo Superior de Investigaciones Científicas, Universidad Autónoma de Madrid, Madrid, Spain.
Abstract:
The correct biogenesis and localization of Pma1 at the plasma membrane is essential for yeast growth. A subset of PMA1 mutations behave as dominant negative because they produce aberrantly folded proteins that form protein aggregates, which in turn provoke the aggregation of the wild type protein. One approach to understand this dominant negative effect is to identify second-site mutations able to suppress the dominant lethal phenotype caused by those mutant alleles. We isolated and characterized two intragenic second-site suppressors of the PMA1-D378T dominant negative mutation. We present here the analysis of these new mutations that are located along the amino-terminal half of the protein and include a missense mutation, L151F, and an in-frame 12bp deletion that eliminates four residues from Cys409 to Ala412. The results show that the suppressor mutations disrupt the interaction between the mutant and wild type enzymes, and this enables the wild type Pma1 to reach the plasma membrane.
Insights
Second-site mutations suppress dominant negative effects of yeast Pma1 mutations. These suppressors disrupt protein interactions, allowing wild-type Pma1 to reach the plasma membrane for proper yeast growth.
Area of Science:
- Molecular biology
- Yeast genetics
Background:
- Proper Pma1 protein localization to the plasma membrane is crucial for yeast growth.
- Certain PMA1 mutations cause dominant negative effects due to protein misfolding and aggregation.
Purpose of the Study:
- To understand the dominant negative effect of PMA1 mutations.
- To identify second-site mutations that suppress dominant lethal phenotypes.
Main Methods:
- Isolation and characterization of intragenic second-site suppressors of the PMA1-D378T mutation.
- Analysis of missense (L151F) and deletion mutations.
Main Results:
- Two suppressor mutations were identified: L151F and a deletion removing residues Cys409-Ala412.
- These suppressor mutations disrupt interactions between mutant and wild-type Pma1 proteins.
Conclusions:
- The identified suppressor mutations restore wild-type Pma1 localization to the plasma membrane.
- Disrupting mutant/wild-type Pma1 interactions rescues yeast growth defects caused by dominant negative mutations.
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