4.6 Article

Regulation of sphingolipid synthesis by the G1/S transcription factor Swi4

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ELSEVIER
DOI: 10.1016/j.bbalip.2021.158983

关键词

Cell cycle; Ceramide; Swi4p transcription factor; Sphingolipid; Dihydroceramide; Mannosylinositol phosphorylceramide

资金

  1. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (CNPq -Universal)
  2. Fundacao de Amparo a Pesquisa do Estado do Rio de Janeiro (FAPERJ) grants Cientistas do Nosso Estado [E-26/203.203/2015, E26210.496/2019, APQ1-E-26/010.000837/2016]
  3. NIH [AI136934, AI116420, AI125770]
  4. Veterans Affairs Program [I01BX002924]
  5. CNPq fellowship

向作者/读者索取更多资源

The SBF complex plays a crucial role in sphingolipid homeostasis regulation, influencing the transcription of key enzymes related to LCBs and ceramides synthesis during the cell cycle, with a peak at the G1/S phase. Deletion of SWI4 affects sphingolipid levels throughout the cell cycle progression and induces partial arrest at the G2/M phase.
SBF (Swi4/Swi6 Binding Factor) complex is a crucial regulator of G1/S transition in Saccharomyces cerevisiae. Here, we show that SBF complex is required for myriocin resistance, an inhibitor of sphingolipid synthesis. This phenotype was not shared with MBF complex mutants nor with deletion of the Swi4p downstream targets, CLN1/CLN2. Based on data mining results, we selected putative Swi4p targets related to sphingolipid metabolism and studied their gene transcription as well as metabolite levels during progression of the cell cycle. Genes which encode key enzymes for the synthesis of long chain bases (LCBs) and ceramides were periodically transcribed during the mitotic cell cycle, having a peak at G1/S, and required SWI4 for full transcription at this stage. In addition, HPLC-MS/MS data indicated that swi4 Delta cells have decreased levels of sphingolipids during progression of the cell cycle, particularly, dihydrosphingosine (DHS), C24-phytoceramides and C24-inositolphosphoryl ceramide (IPC) while it had increased levels of mannosylinositol phosphorylceramide (MIPC). Furthermore, we demonstrated that both inhibition of de novo sphingolipid synthesis by myriocin or SWI4 deletion caused partial arrest at the G2/M phase. Importantly, our lipidomic data demonstrated that the sphingolipid profile of WT cells treated with myriocin resembled that of swi4 Delta cells, with lower levels of DHS, IPC and higher levels of MIPC. Taken together, these results show that SBF complex plays an essential role in the regulation of sphingolipid homeostasis, which reflects in the correct progression through the G2/M phase of the cell cycle.

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