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- W2042100027 endingPage "22" @default.
- W2042100027 startingPage "9" @default.
- W2042100027 abstract "Crossing over between homologous chromosomes occurs during the prophase of meiosis I and is critical for chromosome segregation. In baker's yeast, two heterodimeric complexes, Msh4-Msh5 and Mlh1-Mlh3, act in meiosis to promote interference-dependent crossing over. Mlh1-Mlh3 also plays a role in DNA mismatch repair (MMR) by interacting with Msh2-Msh3 to repair insertion and deletion mutations. Mlh3 contains an ATP-binding domain that is highly conserved among MLH proteins. To explore roles for Mlh3 in meiosis and MMR, we performed a structure-function analysis of eight mlh3 ATPase mutants. In contrast to previous work, our data suggest that ATP hydrolysis by both Mlh1 and Mlh3 is important for both meiotic and MMR functions. In meiotic assays, these mutants showed a roughly linear relationship between spore viability and genetic map distance. To further understand the relationship between crossing over and meiotic viability, we analyzed crossing over on four chromosomes of varying lengths in mlh3Δ mms4Δ strains and observed strong decreases (6- to 17-fold) in crossing over in all intervals. Curiously, mlh3Δ mms4Δ double mutants displayed spore viability levels that were greater than observed in mms4Δ strains that show modest defects in crossing over. The viability in double mutants also appeared greater than would be expected for strains that show such severe defects in crossing over. Together, these observations provide insights for how Mlh1-Mlh3 acts in crossover resolution and MMR and for how chromosome segregation in Meiosis I can occur in the absence of crossing over." @default.
- W2042100027 created "2016-06-24" @default.
- W2042100027 creator A5006280374 @default.
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- W2042100027 creator A5068927293 @default.
- W2042100027 creator A5083228164 @default.
- W2042100027 creator A5088803041 @default.
- W2042100027 date "2013-01-01" @default.
- W2042100027 modified "2023-09-27" @default.
- W2042100027 title "Genetic Analysis of<i>mlh3</i>Mutations Reveals Interactions Between Crossover Promoting Factors During Meiosis in Baker’s Yeast" @default.
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