| Literature DB >> 34957123 |
Tanja Schuster1, Hartmut Geiger1.
Abstract
Septins were first described in yeast. Due to extensive research in non-yeast cells, Septins are now recognized across all species as important players in the regulation of the cytoskeleton, in the establishment of polarity, for migration, vesicular trafficking and scaffolding. Stem cells are primarily quiescent cells, and this actively maintained quiescent state is critical for proper stem cell function. Equally important though, stem cells undergo symmetric or asymmetric division, which is likely linked to the level of symmetry found in the mother stem cell. Due to the ability to organize barriers and be able to break symmetry in cells, Septins are thought to have a significant impact on organizing quiescence as well as the mode (symmetric vs asymmetric) of stem cell division to affect self-renewal versus differentiation. Mechanisms of regulating mammalian quiescence and symmetry breaking by Septins are though still somewhat elusive. Within this overview article, we summarize current knowledge on the role of Septins in stem cells ranging from yeast to mice especially with respect to quiescence and asymmetric division, with a special focus on hematopoietic stem cells.Entities:
Keywords: Borg; Cdc42; HSC; aging; polarity; septin; stem cells; yeast
Year: 2021 PMID: 34957123 PMCID: PMC8695968 DOI: 10.3389/fcell.2021.801507
Source DB: PubMed Journal: Front Cell Dev Biol ISSN: 2296-634X
Septins in HSCs.
| Septin type | Phenotype in HSCs | Murine HSC modification |
|---|---|---|
| Sept1 | Sept1 phosphorylation elevated, impaired cytoskeletal remodeling, decreased cell rigidity, stem cell egress from niche, HSCs with enhanced mobility, decreased quiescence, increased apoptosis and defective reconstitution capacity | Ptpn21−/− HSCs |
| Sept6 | Increased engraftment of Sept6−/− HSCs upon transplantation, decreased contribution to T cells and increased contribution to B cells, no influence on cell cycle kinetics, cell cycle status, homing, stress tolerance | Sept6−/− HSCs |
| Sept7 | Sept7 polarity is regulated by Cdc42 activity; regulation of Cdc42-Borg4-Sept7 interaction in HSCs by Cdc42 activity levelSept7−/− and Borg4−/− HSCs present impaired function upon transplantation and show changed Cdc42 distribution | Control HSCsSept7−/− HSCsBorg4−/− HSCs |
FIGURE 1Septin behavior in hematopoietic stem cells (HSCs). (A) Change in Cdc42-Borg4-Sept7 axis upon aging. Interaction of Borg4 with Sept7 is shifted upon aging according to elevated activity level of Cdc42 to interaction of Cdc42 with Borg4. (B) Change in protein distribution of Sept7 upon aging: Elevated Cdc42 activity leads to a more apolar distribution. (C) Interaction of Septins among themselves. Sept7 and Sept2 don’t show same distribution. The Septin Network is more complex and demands further studies.