AbstractAccurate chromosome segregation is DApenDAnt on a specialized chromosomal structure, the kinetochore/centromere. The only essential constituent of the S. cerevisiae kinetochore established today is CBF3, a multisubunit complex that binds to S. cerevisiae centromere DNA. Therefore CBF3 and its four components, Cbf3a, Cbf3b, Cbf3c and Cbf3d, will form the centerpiece of this review. In addition, we will DAscribe proteins that are putatively involved in kinetochore function specifically in the context with CBF3 interaction. Furthermore, we discuss the role of the S. cerevisiae kinetochores in a putative cell cycle checkpoint control and in microtubule attachment
AbstractIn S. cerevisiae, the four-protein Cbf3 complex binds to the essential CDEIII region of cent...
<div><p>Accurate chromosome segregation requires centromeres (<em>CEN</em>s), the DNA sequences wher...
To maintain a high fidelity of chromosome transmission during mitosis, the genetic material must be...
AbstractAccurate chromosome segregation is DApenDAnt on a specialized chromosomal structure, the kin...
Kinetochores connect centromeres with spindle microtubules during mitosis and meiosis to ensure corr...
Kinetochores connect centromeres with spindle microtubules during mitosis and meiosis to ensure corr...
The kinetochore is a critical multi protein complex of the mitotic machinery, which binds both the c...
An unexpected new role for the chromatin assembly factor CAF-1 and the histone-regulating Hir protei...
The kinetochore is a complex, multi-protein structure required for proper chromosome segregation in ...
SummaryAccurate segregation of genetic material in eukaryotes relies on the kinetochore, a multiprot...
SummaryBackgroundThe centromere (CEN) DNA-kinetochore complex is the specialized chromatin structure...
A system to detect a minimal function of Saccharomyces cerevisiae centromeres in vivo has been devel...
The kinetochore is a complex, multi-protein structure required for proper chromosome segregation in ...
A system to detect a minimal function of Saccharomyces cerevisiae centromeres in vivo has been devel...
SummaryIn budding yeast, the four-protein CBF3 complex (Skp1p-Ctf13p-Cep3p-Ndc10p) initiates kinetoc...
AbstractIn S. cerevisiae, the four-protein Cbf3 complex binds to the essential CDEIII region of cent...
<div><p>Accurate chromosome segregation requires centromeres (<em>CEN</em>s), the DNA sequences wher...
To maintain a high fidelity of chromosome transmission during mitosis, the genetic material must be...
AbstractAccurate chromosome segregation is DApenDAnt on a specialized chromosomal structure, the kin...
Kinetochores connect centromeres with spindle microtubules during mitosis and meiosis to ensure corr...
Kinetochores connect centromeres with spindle microtubules during mitosis and meiosis to ensure corr...
The kinetochore is a critical multi protein complex of the mitotic machinery, which binds both the c...
An unexpected new role for the chromatin assembly factor CAF-1 and the histone-regulating Hir protei...
The kinetochore is a complex, multi-protein structure required for proper chromosome segregation in ...
SummaryAccurate segregation of genetic material in eukaryotes relies on the kinetochore, a multiprot...
SummaryBackgroundThe centromere (CEN) DNA-kinetochore complex is the specialized chromatin structure...
A system to detect a minimal function of Saccharomyces cerevisiae centromeres in vivo has been devel...
The kinetochore is a complex, multi-protein structure required for proper chromosome segregation in ...
A system to detect a minimal function of Saccharomyces cerevisiae centromeres in vivo has been devel...
SummaryIn budding yeast, the four-protein CBF3 complex (Skp1p-Ctf13p-Cep3p-Ndc10p) initiates kinetoc...
AbstractIn S. cerevisiae, the four-protein Cbf3 complex binds to the essential CDEIII region of cent...
<div><p>Accurate chromosome segregation requires centromeres (<em>CEN</em>s), the DNA sequences wher...
To maintain a high fidelity of chromosome transmission during mitosis, the genetic material must be...