214: PI(4,5)P2 Asymmetry Accelerates FGF2 Secretion
Base by Base30 Marras 2025

214: PI(4,5)P2 Asymmetry Accelerates FGF2 Secretion

Kaur M et al., Nature Communications - Reconstitution of asymmetric membranes and matched cell experiments show that transbilayer asymmetry of PI(4,5)P2 lowers the energetic barrier for FGF2-driven lipidic pore formation and enables rapid unconventional secretion. Disrupting PI(4,5)P2 asymmetry in cells blocks FGF2 export. Key terms: FGF2, PI(4,5)P2, membrane asymmetry, unconventional secretion, lipidic pore.

Study Highlights:
The authors created asymmetric LUVs and GUVs by enzymatic conversion of outer-leaflet PI(4)P to PI(4,5)P2 using PIP5K1C. Time-lapse GUV assays showed that PI(4,5)P2 asymmetry accelerated FGF2-dependent lipidic pore formation (mean ≈45 min asymmetric vs ≈95 min symmetric). In CHO-K1 cells, delivering PI(4,5)P2 to the outer leaflet to disturb asymmetry prevented reappearance of surface FGF2-GFP after heparin wash. Addition of other FGF2-binding phosphoinositides (PI(3,4)P2, PI(3,4,5)P3) similarly inhibited secretion, while PI(4)P and PS did not.

Conclusion:
Transbilayer asymmetry of PI(4,5)P2 is a key biophysical determinant that facilitates FGF2 oligomer–dependent lipidic pore formation and efficient unconventional secretion.

Music:
Enjoy the music based on this article at the end of the episode.

Article title:
Plasma membrane transbilayer asymmetry of PI(4,5)P2 drives unconventional secretion of Fibroblast Growth Factor 2

First author:
Kaur M

Journal:
Nature Communications

DOI:
10.1038/s41467-025-66860-z

Reference:
Kaur M, Lolicato F, Nickel W. Plasma membrane transbilayer asymmetry of PI(4,5)P2 drives unconventional secretion of Fibroblast Growth Factor 2. Nat Commun (2025). https://doi.org/10.1038/s41467-025-66860-z

License:
Creative Commons Attribution 4.0 International (CC BY 4.0)

Support:
Base by Base – Stripe donations: https://donate.stripe.com/7sY4gz71B2sN3RWac5gEg00

Official website https://basebybase.com

On PaperCast Base by Base you’ll discover the latest in genomics, functional genomics, structural genomics, and proteomics.

Episode link: https://basebybase.com/episodes/pi45p2-asymmetry-drives-fgf2-secretion

QC:
This episode was checked against the original article PDF and publication metadata for the episode release published on 2025-11-30.

QC Scope:
- article metadata and core scientific claims from the narration
- excludes analogies, intro/outro, and music
- transcript coverage: Audited the transcript's coverage of PI(4,5)P2 transbilayer asymmetry driving FGF2 secretion, including in vitro asymmetric membranes (LUVs/GUVs), kinase-driven outer-leaflet PI(4,5)P2 generation, cell-based disruption of asymmetry and secretion, lipid controls, kinetics, and recovery dynamics.
- transcript topics: FGF2 unconventional secretion overview; PI(4,5)P2 transbilayer asymmetry concept; In vitro reconstitution with asymmetric LUVs/GUVs; PIP5K1C-mediated outer-leaflet PI(4,5)P2 generation and asymmetry verification; Kinetics of FGF2 pore formation in asymmetric vs symmetric membranes; Cell-based disruption of PI(4,5)P2 asymmetry and impact on FGF2 secretion

QC Summary:
- factual score: 10/10
- metadata score: 10/10
- supported core claims: 6
- claims flagged for review: 0
- metadata checks passed: 4
- metadata issues found: 0

Metadata Audited:
- article_doi
- article_title
- article_journal
- license

Factual Items Audited:
- Core mechanism: PI(4,5)P2 transbilayer asymmetry lowers energy barrier for FGF2 membrane pore formation.
- In vitro, asymmetric PI(4,5)P2 on outer leaflet accelerates pore formation (GUVs) compared with symmetric membranes.
- Cell-based disruption of PI(4,5)P2 asymmetry inhibits FGF2 secretion.
- Controls show PS and PI(4)P do not inhibit secretion; PI(3,4)P2 and PI(3,4,5)P3 do inhibit secretion.
- G...

Chapters
  • (00:00:00) - Deep Dive: The physics of cell secretions
  • (00:02:46) - How FGF2 secreates from the cell
  • (00:07:02) - Immunity 7, Asymmetry blocks FGF2 secretion
  • (00:10:24) - What is it about PI4.5p that lowers the energy
  • (00:13:39) - How to Find Your Way Through the Night

Tämä jakso on lisätty Podme-palveluun avoimen RSS-syötteen kautta eikä se ole Podmen omaa tuotantoa. Siksi jakso saattaa sisältää mainontaa.

Jaksot(441)

439: Coembedding Sequence and Structure: CLSS Maps the Protein Universe

439: Coembedding Sequence and Structure: CLSS Maps the Protein Universe

Longo LM et al., PNAS - This episode summarizes a PNAS study introducing CLSS, a contrastive two-tower protein language model that coembeds domain sequences, structures, and subsequences into a shared...

11 Elo 23min

438: Mapping AIRE: a proactive atlas of 9,790 missense variants

438: Mapping AIRE: a proactive atlas of 9,790 missense variants

Axakova A et al., The American Journal of Human Genetics - Axakova et al. generated a variant effect map for AIRE using an insulin‑promoter GFP reporter in HEK293 cells to measure the functional impac...

10 Elo 24min

437: Cell villages and Dirichlet modeling map human cell fitness genetics

437: Cell villages and Dirichlet modeling map human cell fitness genetics

Hanson C et al., The American Journal of Human Genetics - Hanson et al. combine pooled multi-donor human neural progenitor cell "villages" with Townlet, a hierarchical Dirichlet regression model, to e...

9 Elo 28min

436: KIAP4 and the ARND family: building the Leishmania adhesion plaque

436: KIAP4 and the ARND family: building the Leishmania adhesion plaque

Owino BO et al., PNAS - Using TurboID proximity proteomics and microscopy, researchers identify KIAP4 as the canonical member of a conserved Adhesion Related NTPase-like Domain (ARND) family that loca...

8 Elo 24min

435: E. coli TGT binds two tRNAs — cryo-EM reveals dual engagement

435: E. coli TGT binds two tRNAs — cryo-EM reveals dual engagement

Ember M et al., PNAS - This episode examines a cryo-EM study of Escherichia coli tRNA-guanine transglycosylase (TGT) that solves the enzyme structure and its covalent intermediate with tRNATyr. Unexpe...

7 Elo 19min

434: High‑coverage genomes recast Japan's prehistoric demography

434: High‑coverage genomes recast Japan's prehistoric demography

Ishiya K et al., PNAS - This episode examines a PNAS study that reports two high-coverage ancient human genomes from mainland Japan (an Initial Jomon >67× and a Middle Yayoi >46×). The genomes enable ...

6 Elo 27min

433: Lactate, HSP90α and the Mitochondrial Switch

433: Lactate, HSP90α and the Mitochondrial Switch

Wu G et al., Proceedings of the National Academy of Sciences - This episode examines a PNAS study that identifies site-specific lactylation of HSP90α as a metabolic signal linking glycolysis to mitoch...

23 Heinä 23min

432: Echovirus 18: Capsid opening releases the genome

432: Echovirus 18: Capsid opening releases the genome

Mukhamedova L et al., Proceedings of the National Academy of Sciences - Using cryo-electron tomography and single-particle cryo-EM of infected Cos-7 cells, the authors show that echovirus 18 (E18) rel...

23 Heinä 18min

Suosittua kategoriassa Tiede

rss-poliisin-mieli
tiedekulma-podcast
rss-mita-tulisi-tietaa
docemilia
rss-hereilla
rss-bios-podcast
utelias-mieli
hippokrateen-vastaanotolla
rss-metsanomistaja-podcast
rss-lapsuuden-rakentajat-podcast
rss-sosiopodi
filocast-filosofian-perusteet
rss-tiedetta-vai-tarinaa
rss-duodecim-lehti
radio-antro
rss-totuuden-liepeilla