We have no meanings for "bud yeast" in our records yet.
1 Our results highlight both similarities and differences to lncRNA regulation in budding yeast .
2 Here we analyze the causes and consequences of fork rotation in budding yeast .
3 This study reveals an unanticipated widespread use of RNA transport in budding yeast .
4 During polarity establishment in budding yeast , these antagonistic processes become apposed.
5 Nutrient stresses trigger a variety of developmental switches in the budding yeast Saccharomyces cerevisiae.
6 Proper orientation of the mitotic spindle is critical for successful cell division in budding yeast .
7 The function of Rap1 appears to be evolutionarily plastic, especially in the budding yeast lineages.
8 FCF induced fragmentation of budding yeast mitochondrial reticula and the loss of mitochondrial membrane potential.
9 Since their divergence from Pezizomycotina, the mRNA metabolism of budding yeasts have undergone regressive evolution.
10 The histone variant H2AZ marks nucleosomes flanking the promoters of most genes of budding yeast .
11 Taken together, these data shed new light on the organization of DDR signaling in budding yeast .
12 We constructed bacterial protein expression plasmids for 25 proteins involved in MAPK signalling in budding yeast .
13 Budding yeast cells commit to their cytokinesis plane by choosing a bud site and polarizing their growth.
14 Like many asymmetrically dividing cells, budding yeast segregates mitotic spindle poles nonrandomly between mother and daughter cells.
15 An equivalent interaction appears to exist in budding yeast , making this a nearly universal means of telomerase regulation.
16 Positive feedback loops promoting localized activation of the GTPase Cdc42p are central to this process in budding yeast .
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