[PDF] Top 20 Structure and Function in the Budding Yeast Nucleus
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Structure and Function in the Budding Yeast Nucleus
... The yeast SUN-domain protein Mps3 and the two MAN1 homologs (Heh1 or Src1 and Heh2) serve a similar function in yeast, despite the ab- sence of lamins (Grund et ...a yeast- specific protein ... See full document
23
Nitrate transporters in plants: structure, function and regulation
... The plant and algal NRT2 gene products are about 30% identical to their fungal homologues and are predicted to possess a similar 12 transmembrane do- main structure [41]. On the basis of their hydropathy pro¢les ... See full document
18
Protein Acetylation and Acetyl Coenzyme A Metabolism in Budding Yeast
... Cells sense and appropriately respond to the physical conditions and availability of nutrients in their environment. This sensing of the environment and consequent cellular responses are orchestrated by a multitude of ... See full document
12
How to halve ploidy : lessons from budding yeast meiosis
... Cell cycle is coordinated with chromosome segregation. Replication of DNA during S-phase generates sister chromatids which are held together by a highly conserved protein complex called as cohesin. Cohesin is composed ... See full document
34
The Potential Energy of Nucleon and Nuclear Structure
... energy function of nucleon in nucleus, derives the expression equation of nuclear force, shows that nucleus has the shell structure by the solving the Schrödinger equation of nucleon, obtains ... See full document
8
Kinetochore Function and Chromosome Segregation Rely on Critical Residues in Histones H3 and H4 in Budding Yeast
... in budding yeast pericentro- meric chromatin structure have been observed by micros- copy (Haase et ...chromatin structure in response to microtubule dynamics (Haase et ...chromatin ... See full document
24
Rif2 Promotes a Telomere Fold-Back Structure through Rpd3L Recruitment in Budding Yeast
... lariat-like structure termed a t-loop ...of yeast telomeres it has been difficult to both prepare and analyze wild type length yeast telomeres via electron microscopy ...the budding ... See full document
13
Factors driving metabolic diversity in the budding yeast subphylum
... The budding yeast subphylum Saccharomycotina is among the most extensively characterized higher taxo- nomic ranks ...784 budding yeast species to test whether physiological as- sociations ... See full document
15
The Composition, Functions, and Regulation of the Budding Yeast Kinetochore
... ring structure with sufficient diameter that it could freely slide along the microtubule, while the forced walk model suggests that fibrils would harness protofila- ment ... See full document
30
Factors controlling internal initiation of transcription at PRY3 in budding yeast
... chaperone function of spt6 140 and spt6 1004 is not abolished at 308C, the disrupted function may also be independent of nucleosome ...chromatin structure over PRY3 in spt6 140 and spt6 1004 at 308C ... See full document
7
Evaluation of Mitochondrial Dysfunction and α-Synuclein Aggregation in Yeast Models of Parkinson’s Disease
... secondary structure in the cytosol (Weinreb ...helical-α-synuclein structure (Davidson et. al., 1998). α-Synuclein loses its normal function upon lipid binding; this may play a role in neuronal death ... See full document
23
Investigating Potassium Channels in Budding Yeast: A Genetic Sandbox
... Bakers’ yeast, concentrates potassium in the cytosol as an electrogenic osmolyte and enzyme ...cofactor. Yeast are capable of robust growth on a wide variety of potassium concentrations, ranging from 10 mM ... See full document
14
Septin Function in Yeast Model Systems and Pathogenic Fungi
... the structure and is a target for regulation by phosphorylation ...from yeast showed a stoichiometry of 2:2:1:2 for Cdc3, -10, -11, and -12 (33), but other studies suggested that this might be due to loss ... See full document
10
Programmed Cell Death Initiation and Execution in Budding Yeast
... As the eukaryotic cell and its symbiont became more intertwined, regulatory systems evolved to take advantage of this unique situation (Ameisen 2002). For example, pro- teins that regulate the newly evolving PCD would be ... See full document
12
The Role of Cdh1p in Maintaining Genomic Stability in Budding Yeast
... kinetochore function is com- that regulates the metaphase-to-anaphase transition (re- promised both the checkpoint and Pds1p become essen- viewed in Gardner and Burke ...In budding yeast the end ... See full document
16
Vps Factors Are Required for Efficient Transcription Elongation in Budding Yeast
... by yeast transcription factor Gcn4 requires a subset of Vps factors that function at the ...the nucleus and bind to upstream activation sequences (UAS), but did not efficiently stimulate preinitia- ... See full document
29
Proteasome Activity Is Influenced by the HECT_2 Protein Ipa1 in Budding Yeast
... Substrate ubiquitylation is connected to diverse regulatory processes: it induces proteasomal proteolysis or acts through nonproteolytic mechanisms (Finley et al. 2012). Thus, E3s influence numerous diverse cellular ... See full document
15
Global Replication-Independent Histone H4 Exchange in Budding Yeast
... As yeast (Saccharomyces cerevisiae) lacks ...transcribed yeast genes during transcription and that they rap- idly reassemble following transcriptional repression (1, 2, 5, 31, 34, ... See full document
8
The spindle position checkpoint in budding yeast: the motherly care of MEN
... precise function in the spindle position checkpoint is currently unknown, Kin4 seems to exert its inhibitory function through Bub2/Bfa1 and to counteract the Cdc5- dependent phosphorylation of Bub2 and Bfa1 ... See full document
6
Yeast stress signalling
... I have begun an exam ination of repressive inputs to several stress response genes in S.pombe. The observed repressive effects on S ty l/A tfl dependent genes had both sim ilarities and differences w ith gene control m ... See full document
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