Repository logo
Log In(current)
  1. Home
  2. Colleges & Schools
  3. College of Arts and Sciences
  4. Biochemistry & Cellular and Molecular Biology
  5. Biochemistry, Cellular and Molecular Biology Publications and Other Works
  6. Morphogenesis signaling components influence cell cycle regulation by cyclin dependent kinase
Details

Morphogenesis signaling components influence cell cycle regulation by cyclin dependent kinase

Date Issued
July 1, 2009
Author(s)
Tobe, Brian TD
Kitazono, Ana A.  
Garcia, Jacqueline S.
Garber, Renee A.
Bevis, Brooke J.
Choy, John S.
Chasman, Daniel
Kron, Stephen J.
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/15607
Abstract

Background


The yeast cell cycle is largely controlled by the cyclin-dependent kinase (CDK) Cdc28. Recent evidence suggests that both CDK complex stability as well as function during mitosis is determined by precise regulation of Swe1, a CDK inhibitory kinase and cyclin binding partner. A model of mitotic progression has been provided by study of filamentous yeast. When facing nutrient-limited conditions, Ras2-mediated PKA and MAPK signaling cascades induce a switch from round to filamentous morphology resulting in delayed mitotic progression.

Results

To delineate how the dimorphic switch contributes to cell cycle regulation, temperature sensitive cdc28 mutants exhibiting constitutive filamentation were subjected to epistasis analyses with RAS2 signaling effectors. It was found that Swe1-mediated inhibitory tyrosine phosphorylation of Cdc28 during filamentous growth is in part mediated by Ras2 activation of PKA, but not Kss1-MAPK, signaling. This pathway is further influenced by Cks1, a conserved CDK-binding partner of elusive function with multiple proposed roles in CDK activation, transcriptional regulation and ubiquitin-mediated proteasome degradation.

Conclusion

The dynamic balance between Cks1- and Swe1-dependent regulation of Cdc28 and, thereby, the timing of mitosis during yeast dimorphism is regulated in part by Ras2/cAMP-mediated PKA signaling, a key pathway controlling filamentous growth.

Disciplines
Biochemistry, Biophysics, and Structural Biology
Cell and Developmental Biology
Recommended Citation
Cell Division 2009, 4:12 doi:10.1186/1747-1028-4-12
Embargo Date
July 15, 2013
File(s)
Thumbnail Image
Name

1747_1028_4_12.pdf

Size

1.57 MB

Format

Adobe PDF

Checksum (MD5)

977848a7dc1180fe4dcec61d2e4f7128


University Libraries

1015 Volunteer Boulevard
Knoxville, TN 37996
865-974-4351

Map & Directions
Donate to the Libraries
  • About
  • John C. Hodges Society
  • Speaking Volumes magazine
  • Outreach
  • Directory
  • Employment
  • Policies
  • Library Intranet
University of Tennessee power T logo

The University of Tennessee, Knoxville
Knoxville, Tennessee 37996
865-974-1000

Events
A-Z
Apply
Privacy
Map
Directory
Give to UT
Accessibility

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science