Grilled Cheese

ExploreLog inSign up
Terms of UsePrivacy PolicyCommunity StandardsHelpGet the app

Grilled Cheese is a product of Village Compute

Version devBuilt at: 2026-10-10 01:38:52 EDT

Explore

PostsPeople
LatestRanked
@jcb.orgOct 9, 2026, 4:00 PM

Chadha, Schmoller et al. follow budding #yeast cell lineages as they adapt their size in response to a nutrient shift. They show that size regulators that seem redundant in steady-state can have specific roles for cell size adaptation. rupress.org/jcb/article/...

@rupress.orgOct 9, 2026, 4:00 PM

In @jcb.org, Chadha, Schmoller et al. follow budding #yeast cell lineages as they adapt their size in response to a nutrient shift. They show that size regulators that seem redundant in steady-state can have specific roles for cell size adaptation. rupress.org/jcb/article/...

@icp-csic.bsky.socialOct 9, 2026, 10:32 AM

#MaX #SeminariosICP #WasteToValue #Yeast #Bioprocesses #Carboxylate @imdeaenergia.bsky.social

@ioannistsirkas.bsky.socialOct 9, 2026, 10:08 AM

It is a great experience to present in the 8th Munich #Yeast Meeting our recently accepted story about R-loops, RNAPIIs and TRCs. I really enjoy yeast meetings! @helmholtzmunich.bsky.social @epihmgu.bsky.social @hamperllab.bsky.social

@yeastgenome.bsky.socialOct 9, 2026, 12:32 AM

🩺 #Yeast as a disease model: a screen in cardiolipin-deficient yeast identified ebselen as a mitochondrial rescue compound effective across seven fungal models of mitochondrial disease, patient fibroblasts, cardiomyocytes and mice
🧬 #YeastResearch 🧪 #SGD 🔬

www.yeastgenome.org/reference/S1...

@genetics-gsa.bsky.socialOct 8, 2026, 10:01 PM

New experiments in REV1-deficient #yeast cell lines assess whether the preferential use of the error-prone repair pathway by haploids explains the difference in genome-wide mutation patterns between diploids and haploids.

Read more in #GENETICS 🔗 buff.ly/4llBZ8b

@jcb.orgOct 8, 2026, 4:00 PM

How cells adapt their membranes to prolonged stress is poorly understood. Williams, Klose, Ernst, and Carvalho @dunnschool.bsky.social show that chronic hyperosmotic stress triggers #LipidDroplet accumulation and a shift toward phosphatidylcholine in budding #yeast. rupress.org/jcb/article/...

@rupress.orgOct 8, 2026, 4:00 PM

How cells adapt their membranes to prolonged stress is poorly understood. In @jcb.org, Williams, Klose, Ernst, and Carvalho show that chronic hyperosmotic stress triggers #LipidDroplet accumulation and a shift toward phosphatidylcholine in budding #yeast. rupress.org/jcb/article/...

@ajstein.bsky.socialOct 8, 2026, 2:28 PM

A university start-up uses microorganisms to turn #CO₂ and #hydrogen from renewable electricity into #yeast biomass to develop #protein ingredients that could be used instead of #egg or #dairy protein—without more #landuse and with less exposure to external shocks: tech.au.dk/en/about-the...

@pflieglerlab.bsky.socialOct 8, 2026, 11:17 AM

Whole genomes of the Metschnikowia pulcherrima #yeast complex! #yeastevolution

@pflieglerlab.bsky.socialOct 8, 2026, 10:53 AM

I have finished reading the new book of @larsga.bsky.social about The Power of Beer! Absolutely stunning information overload, especially on historic trends, styles, and political economy, all from the perspectives of brewing. And of course, a lot about #yeast and how people domesticated it!

@yeastgenome.bsky.socialOct 7, 2026, 11:32 PM

📊 Different methods for profiling #Yeast cell walls capture different things. Scatter-based flow cytometry tracks mannan abundance; lectin fluorescence reflects surface composition. Approaches are complementary rather than interchangeable
🧬 #YeastResearch 🧪 #SGD 🔬
www.yeastgenome.org/reference/S1...

@yeastgenome.bsky.socialOct 7, 2026, 4:23 PM

Catching up on a #yeast gene? Start with the Literature section on #SGD gene pages. New: a chart of curated papers by year, plus the latest publications. The full curated set of papers, organized by relevance, is only one click away. #UIupdate www.yeastgenome.org/blog/new-lit...

Bar graph of curated ATG8 publications by year on its SGD gene page, followed by a list of the most recent papers.
@yeast-journal.bsky.socialOct 7, 2026, 3:31 PM

New study out in #Yeast: Samer El Khoury, Cecile Grondin, Hugo Devillers, Marizeth Groenewald and @jllegras.bsky.social analyzed the genome of the Metschnikowia pulcherrima complex to resolve #taxonomic issues regarding the classification of this species.

👇
onlinelibrary.wiley.com/doi/10.1002/...

@yeastgenome.bsky.socialOct 6, 2026, 8:49 PM

🖖 What drives replicative aging in #Yeast? An @oregonstate.edu 🦫 screen found 132 variant genes & 60 differentially expressed genes with little overlap, suggesting longevity is governed by many genes through diverse mechanisms

🧬 #YeastResearch 🧪 #SGD 🔬
www.yeastgenome.org/reference/S1...

@yeastgenome.bsky.socialOct 5, 2026, 10:54 PM

✂️ A nonessential #Yeast spliceosome factor w/conserved domain touching the catalytic core turns out to matter more than expected: Cwc15 stabilizes active site & facilitates structural transitions, implications for splice site proofreading
🧬 #YeastResearch 🧪 #SGD 🔬
www.yeastgenome.org/reference/S1...

@yeastgenome.bsky.socialOct 5, 2026, 6:03 PM

The first integrated #eukaryotic #genome #database has now been running for 30+ years. 🧬 A new history of #SGD traces how a #Stanford #yeast database became a global hub for #genetics, functional #genomics & #humanDisease research. 📄 bit.ly/SGD30FEMSYeast #bioinformatics

Thirty years of sustained growth in SGD literature coverage and biological annotation. The figure shows two measures of SGD’s expansion from 1996 to 2025. The black line represents cumulative papers incorporated into the database, reflecting the pace at which published yeast research has been integrated. Stacked bars show cumulative annotations across major annotation types, ordered from bottom to top by year of first curation: locus summaries (orange, since 1999), GO annotations (green, since 2002), phenotype annotations (blue, since 2006), allele annotations (red, since 2006), regulation annotations (purple, since 2016), PTM annotations (cyan, since 2017), disease annotations (pink, since 2018), and functional complementation (brown, since 2021). The progressive accumulation of annotation types, visible as new colored segments appearing over time, illustrates SGD’s transformation from a genome sequence database into a comprehensive biological knowledge resource. Three vertical dashed lines mark key milestones in SGD’s history: (1) database launch and first annotations, (2) adoption of GO, and (3) expansion into disease-focused curation. By 2025, SGD contained ~100 000 papers and over 500 000 annotations spanning diverse data types.
@calmeilles.bsky.socialOct 4, 2026, 10:22 AM

25% Wholemeal, 75% strong bread flour, allspice, cucumber sandwiches.

#food #cooking #baking #bread #yeast #flavoured #lunch #breadsky

Tin loaf with diagonal expansion scores in the top that did not expand very much.

450 g strong white bread flour
150 g wholemeal flour
390 g water (65% hydration)
12 g salt
7 g instant yeast
1 g ground allspice (pimento)

Mix all the ingredients and knead until it makes a somewhat elastic dough. The bran in the wholemeal means that it can never be as smooth as all white flour. Eight minutes kneading was enough for this.
Leave to rise in a very lightly oiled, covered bowl until doubled in size.
Tip out, knock back and shape into a log to fit a 9×5" tin. I line mine with baking parchment because the nonstick is disastrously shot, but if your tin is good that may not be required.
Leave to rise until almost doubled again.  
Bake in a preheated oven at 220°C / 425°F / gm7 for 45–50 minutes. Same loaf, sliced.Full on the cut end showing a tight dense and even crumb of light brown bread
Slices assembled into cucumber sandwiches, stacked, cut in half and turned to present the cut edges to the camera.
@pflieglerlab.bsky.socialOct 3, 2026, 6:49 AM

We are absolutely thrilled to be here in Grodås, Hornindal for the Norsk Kornølfestival to discuss #yeast , traditional fermentations and to taste an insane variety of local farmhouse ales w/ @balintnemeth.bsky.social @gergohorvath.bsky.social

@yeastgenome.bsky.socialOct 3, 2026, 3:58 AM

🧘 #Yeast RPL22 pre-mRNA acts as its own regulator. The intron toggles between 2 competing structures: one blocks splicing, one permits it. Rising Rpl22 levels shift the balance toward inhibition, creating a protein-responsive RNA switch

🧬 #YeastResearch 🧪 #SGD 🔬
www.yeastgenome.org/reference/S1...

Load more