BSCL2/seipin regulates adipogenesis through actin cytoskeleton remodelling.

@article{Yang2014BSCL2seipinRA,
  title={BSCL2/seipin regulates adipogenesis through actin cytoskeleton remodelling.},
  author={Wulin Yang and Shermaine Thein and Xiaorui Wang and Xuezhi Bi and Russell E Ericksen and Feng Xu and Weiping Han},
  journal={Human molecular genetics},
  year={2014},
  volume={23 2},
  pages={
          502-13
        }
}
Seipin regulates lipid homeostasis by preventing lipid droplet (LD) formation in non-adipocytes but promoting it in developing adipocytes. Here, we report that seipin interacts with 14-3-3β through its N- and C-termini. Expression of 14-3-3β is upregulated during adipogenesis, and its deletion results in defective adipogenesis without affecting key adipogenic transcription factors. We further identified the actin-severing protein cofilin-1 as an interacting partner to 14-3-3β. Cofilin-1 was… 

Figures from this paper

Arp2/3 complex regulates adipogenesis by controlling cortical actin remodelling.
TLDR
The results show that the Arp2/3 complex is an essential regulator of adipocyte development through control of the formation of cortical actin structures, which may facilitate nutrient uptake and signalling events.
14-3-3ζ coordinates adipogenesis of visceral fat
TLDR
It is reported that 14-3-3ζ-knockout mice are strikingly lean from birth with specific reductions in visceral fat depots, and in vivo and in vitro findings demonstrate that 14.3- 3ζ is a critical upstream driver of adipogenesis.
Seipin regulates lipid homeostasis by ensuring calcium‐dependent mitochondrial metabolism
TLDR
It is shown that glycolytic metabolites accumulate and the downstream mitochondrial TCA cycle is impaired in dSeipin mutants, and Seipin promotes adipose tissue lipid storage via calcium‐dependent mitochondrial metabolism.
SNAP23 regulates BAX-dependent adipocyte programmed cell death independently of canonical macroautophagy
TLDR
A role for SNAP23 is demonstrated in the control of macroautophagy and programmed cell death through an ATG9-dependent, but ATG7-independent, pathway regulating BAX protein levels and BAX activation.
14-3-3ζ: A numbers game in adipocyte function?
TLDR
Go beyond adipocyte differentiation, this study opens new avenues of research in the context of metabolism, as 14-3-3ζ binds to a variety of well-established metabolic proteins that harbor its canonical phosphorylation binding motifs, suggesting that 14-2-2ζ may contribute to key metabolic signaling pathways, such as those that facilitate glucose uptake and fatty acid metabolism.
Lipogenic subdomains of the ER : the role of seipin
TLDR
Insight is provided into the function of the lipodystrophy protein seipin and the mechanisms of LD formation and ER-LD contacts, which suggest that theER-LD nexus could be considered as a joint system, with continuous bidirectional trafficking of cargo occurring via ER- LD contacts mediated by Seipin.
...
1
2
3
4
5
...

References

SHOWING 1-10 OF 35 REFERENCES
Seipin differentially regulates lipogenesis and adipogenesis through a conserved core sequence and an evolutionarily acquired C-terminus.
TLDR
It is proposed that seipin is involved in lipid homoeostasis by restricting lipogenesis and LD accumulation in non-adipocytes, while promoting adipogenesis to accommodate excess energy storage.
Regulation of adipogenesis by cytoskeleton remodelling is facilitated by acetyltransferase MEC-17-dependent acetylation of α-tubulin.
TLDR
It is proposed that co-ordinated up-regulation of α-tubulin acetylation initiates cytoskeleton remodelling by promoting α- Tubulin severing by katanin which, in turn, allows expansion of lipid droplets and accelerates the morphological transition toward mature adipocytes.
Insulin-stimulated Interaction with 14-3-3 Promotes Cytoplasmic Localization of Lipin-1 in Adipocytes*
TLDR
It is suggested that insulin may modulate the cellular function of lipin-1 by regulating its subcellular localization through interactions with 14-3-3 proteins.
Insulin-stimulated GLUT4 Translocation in Adipocytes Is Dependent upon Cortical Actin Remodeling* 210
TLDR
In vivo time-lapse confocal fluorescent microscopy of actin-yellow fluorescent protein demonstrated that insulin stimulation initially results in cortical actin remodeling followed by an increase in polymerized actin in the peri-nuclear region, and insulin stimulation of cortex actin rearrangements was completely blocked by treatment of the cells with latrunculin B, C. difficile toxin B, and jasplakinolide.
Berardinelli-Seip Congenital Lipodystrophy 2/Seipin Is a Cell-Autonomous Regulator of Lipolysis Essential for Adipocyte Differentiation
TLDR
This study underscores the fundamental role of regulated cAMP/PKA-mediated lipolysis in adipose differentiation and identifies Bscl2 as a novel cell-autonomous determinant of activatedlipolysis essential for terminal adipocyte differentiation.
Cytoskeletal Disassembly and Cell Rounding Promotes Adipogenesis from ES Cells
TLDR
It is concluded that forced cell rounding via cytoskeletal disruption overrides the effects of calreticulin, an ER chaperone, thus negatively regulating adipogenesis via focal adhesion-mediated cell spreading.
The human lipodystrophy gene product Berardinelli-Seip congenital lipodystrophy 2/seipin plays a key role in adipocyte differentiation.
TLDR
Experiments suggest that Bscl2 may be essential for normal adipogenesis; it works upstream or at the level of peroxisome proliferator-activated receptor-gamma, enabling the latter to exert its full activity during adipogenesis.
Identification of a distal GLUT4 trafficking event controlled by actin polymerization.
TLDR
It is found that defective actin remodeling was accompanied by normal insulin-regulated accumulation of GLUT4 vesicles close to the PM, but the final exocytotic fusion step was impaired, demonstrating a crucial role for actin in the final stage of this process.
Actin filaments play a critical role in insulin-induced exocytotic recruitment but not in endocytosis of GLUT4 in isolated rat adipocytes.
TLDR
Results of the experiment show that, in rat adipocytes, latrunculin A may be a more suitable tool than cytochalasin D for disruption of actin Filaments, and actin filaments play a crucial role in exocytotic recruitment of GLUT4 to the plasma membrane from the intracellular pool, but not in its endocytosis.
Transcriptional control of adipogenesis.
...
1
2
3
4
...