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We are coming together in Sacramento in March, following other summits in North America in 2024 and 2025. We hope you consider joining us September 24th - 26th in Sacramento CA with local host ALS Network. Registration opening later this month. #EndtheLegacy #c9orf72 #grn #fus #sod1 #tardpb #mapt

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I am guffawing right now! #grn

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Schulbücher müssen auch unbequeme Wahrheiten lehren. Die unterstützende Rolle einer 🇦🇹 BReg. ( #ÖVP #GRN) im #GazaGenocide gehört aufgearbeitet, für historische Verantwortung, kritisches Denken und echte Menschenrechtsbildung!

#ATICJ #Bildung

bsky.app/profile/akra...

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Morgen 🇦🇹
Hier spricht #Gaza 🇵🇸

"There's no Auschwitz in #Gaza. But it's still #Genocide"

Der Grundstein dafür wurde u.a. von 1 🇦🇹 BReg. (#ÖVP #GRN) mitgetragen! Dieses moralische Versagen wird für immer in d Geschichte verankert bleiben, 1 unverzeihlicher Bruch mit d Prinzipien d Menschlichkeit. 1/

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Evolution of robust cell differentiation under epigenetic feedback In multicellular organisms, cells differentiate into multiple types as they divide. States of these cell types, as well as their numbers, are known to be robust to external perturbations, as conceptua...

Happy to announce that the first work from my PhD research, supervised by Prof. Kunihiko Kaneko, has been published in @physrevresearch.bsky.social
journals.aps.org/prresearch/a...

#Differentiation #GRN #Evolution

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Researchers use partitioned local depth (PaLD) to search for patterns within time series transcriptome data

academic.oup.com/insilicoplan...
#Arabidopsis #GRN #PlantScience

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GitHub - aliaaz99/GRNITE Contribute to aliaaz99/GRNITE development by creating an account on GitHub.

[4/4] Our approach is by design a meta-method: you can use it with your favorite single-cell RNA-based GRN inference tool, and squeeze more insights out of your data! Check us out GitHub: github.com/aliaaz99/GRN....

#singlecell #GRN #LLM

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Résumé du marché de New York (7e) Le Nasdaq chute, les rendements chutent et le dollar s’affaiblit également | Reuters Publié le 07 novembre 2025. Le dollar a connu une journée mouvementée...

#Économie #AMERS #com #CRU #Dest: #nojpbsm #ENR #Frx #gol #GRN #Intention

Origin | Interest | Match

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New algorithm address the challenge of inferring GRNs from time series transcriptome data. This approach generates cohesive networks with minimal user input, revealing biologically meaningful neighborhoods.
doi.org/10.1093/insi... #PlantBiology #Transcriptomics #GRN

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We have been busy this summer of 2025! Read about it here endthelegacy.org/newsletters - including that our Pacific Region Summit is starting in a few hours - cheers to our volunteer planning committee! #c9orf72 #s0d1 #grn #fus #EndtheLegacy

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「grn」が提案する健康的ダイエット!新規セット登場のメガ割企画 ダイエット専門ブランドのgrnが、健康的なライフスタイルを提案する『4週間チャレンジセット』をQoo10のメガ割で発表します。特典満載です!

「grn」が提案する健康的ダイエット!新規セット登場のメガ割企画 #ダイエット #インナービューティー #grn

ダイエット専門ブランドのgrnが、健康的なライフスタイルを提案する『4週間チャレンジセット』をQoo10のメガ割で発表します。特典満載です!

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Discover the New '4-Week Challenge Set' from grn at Qoo10 Mega Sale The health-focused brand grn unveils its '4-Week Challenge Set' during the Qoo10 Mega Sale, boosting your wellness journey.

Discover the New '4-Week Challenge Set' from grn at Qoo10 Mega Sale #South_Korea #grn #4-Week_Challenge #health-focused #Jeollabuk-do

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ダイエットを楽しむ新習慣!grnの4週間チャレンジセット登場 grnがQoo10メガ割期間中に発表する『4週間チャレンジセット』。ダイエットとインナービューティーを同時にサポートする内容で、特別価格の提供も要チェック!

ダイエットを楽しむ新習慣!grnの4週間チャレンジセット登場 #インナービューティー #ダイエット #grn

grnがQoo10メガ割期間中に発表する『4週間チャレンジセット』。ダイエットとインナービューティーを同時にサポートする内容で、特別価格の提供も要チェック!

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ダイエットを楽しむ!grnの新しい4週間チャレンジセット登場 ダイエットブランド「grn」が、Qoo10のメガ割イベントに合わせて『4週間チャレンジセット』を発表。健康的なライフスタイルを目指すあなたにぴったりの内容です!

ダイエットを楽しむ!grnの新しい4週間チャレンジセット登場 #ダイエット #grn #チャレンジセット

ダイエットブランド「grn」が、Qoo10のメガ割イベントに合わせて『4週間チャレンジセット』を発表。健康的なライフスタイルを目指すあなたにぴったりの内容です!

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健康的なライフスタイルを提案する「grn」の新しい4週間チャレンジセット ダイエットとインナービューティーをサポートする「grn」の新企画『4週間チャレンジセット』が登場。Qoo10限定販売です。どうぞお見逃しなく!

健康的なライフスタイルを提案する「grn」の新しい4週間チャレンジセット #健康食品 #grn #4週間チャレンジ

ダイエットとインナービューティーをサポートする「grn」の新企画『4週間チャレンジセット』が登場。Qoo10限定販売です。どうぞお見逃しなく!

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The Leader in Professional Transition
#HealthcareJobs #HealthInsuranceJobs #LifeScienceJobs #ExecutiveSearch #Recruiting #Consumergoodsjobs #ManufacturingJobs #GlobalRecruitersNetwork #Forbes #GRNPlano #GRN

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Great to see the team behind the Progranulin Information Navigator by the Bluefield Project at #AAIC2025! This resource raises awareness of GRN-specific trials & improves access to genetic testing & counseling. Bluefield is also a cofounder of the FTD Disorders Registry.

#endFTD #GRN #FTDResearch

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The Leader in Professional Transition®
#GRNRichardson #GlobalRecruitersNetwork #Forbes #Recruiting #Pharmacyjobs #ManufacturingJobs #Engineeringjobs #Productengineeringjobs #Healthcare jobs #ConsultingJobs #GRN 5/5

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Then how about vertebrates? @gabrielalima19.bsky.social @lsu.bsky.social is illuminating GRN of appendage regeneration comparing multiple non-model species #PASEDB2025 #regeneration #GRN #nonmodel

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Forbes America's Best Professional & Executive Recruiting Firms 2025 Global Recruiters Network
#DefensecontractorJobs #LogisticsJobs #SupplyChainJobs #DistributionJobs #ProgramManagementjobs #SalesJobs #MarketingJobs #ManufacturingJobs #GRNStateline #GRN #Forbes #Recruiter #GlobalRecruitersNetwork

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Forbes America's Best Professional and Executive Recruiting Firms 2025
@Global Recruiters Network
#FoodandBeverageJobs #ConsumerPackagedGoodsJobs #CPGJobs #Specialty IngredientsJobs #HealthJobs #NutritionJobs #GRNCarmel #Forbes #GRN #GlobalRecruitersNetwork

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It always surprises me that young people know about Watson and Crick but not about Jacob and Monod when the contribution of the latter is, imo, of bigger significance and creativity than the other's which would have been found sooner or later. Not so much of the day #GRN framework.

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Today we honor Juneteenth — a reminder of the fight for freedom, justice, and equity.
As recruiters, let’s keep pushing for fair and inclusive workplaces, everywhere.

#Juneteenth
#EquityInHiring
#GlobalRecruiters
#GRN
#Equity
#GlobalRecruitersNetwork

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Their expertise in corporate finance, global talent development and customer service strengthens our ability to deliver strategic solutions for businesses worldwide.

#NewTalent #ExecutiveSearch #GRNTeam #FinancialStrategy #TalentDevelopment #GlobalRecruitersNetwork #GRN #Recruiting

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Left: Predicted gene regulatory network of Streptomyces coelicolor based on 17 well-known regulators. Each node in the network represents a (regulatory) gene, and every edge represents a PWM predicted regulatory interaction between nodes. The edges colored in dark gray indicate strong PWM prediction scores, while the lighter gray shades represent weaker interactions. Matches within BGC regions are depicted as triangles. In six regions (black circled), the matches fall within a co-expressed region, highlighting their functional relation to these compounds. Right: Proposed biosynthetic pathway for assembly of desferrioxamines E and B. Main biosynthetic enzymes presented in bold face. DesG and DesH balance intracellular N-hydroxy-N-succinylcadaverine (HSC) and N-hydroxy-N-acetylcadaverine (HAC) concentrations by converting HSC to HAC. In the absence of DesG and/or DesH, the cells likely fail to produce sufficient levels of HAC, thereby strongly attenuating the production of DFOB. Although DesC has been shown to be able to catalyze the acetylation of N-hydroxycadaverine in vitro, the enzyme can only modestly compensate for the loss of DesH in vivo, underlining the important role played by DesG and DesH in DFOB production.

Left: Predicted gene regulatory network of Streptomyces coelicolor based on 17 well-known regulators. Each node in the network represents a (regulatory) gene, and every edge represents a PWM predicted regulatory interaction between nodes. The edges colored in dark gray indicate strong PWM prediction scores, while the lighter gray shades represent weaker interactions. Matches within BGC regions are depicted as triangles. In six regions (black circled), the matches fall within a co-expressed region, highlighting their functional relation to these compounds. Right: Proposed biosynthetic pathway for assembly of desferrioxamines E and B. Main biosynthetic enzymes presented in bold face. DesG and DesH balance intracellular N-hydroxy-N-succinylcadaverine (HSC) and N-hydroxy-N-acetylcadaverine (HAC) concentrations by converting HSC to HAC. In the absence of DesG and/or DesH, the cells likely fail to produce sufficient levels of HAC, thereby strongly attenuating the production of DFOB. Although DesC has been shown to be able to catalyze the acetylation of N-hydroxycadaverine in vitro, the enzyme can only modestly compensate for the loss of DesH in vivo, underlining the important role played by DesG and DesH in DFOB production.

Most #biosynthetic gene clusters remain uncharacterized. @marnixmedema.bsky.social @gillesvanwezel.bsky.social &co integrate #GRN analysis & global expression data to identify desJGH as an operon essential for #biosynthesis of #desferrioxamineB in Streptomyces @plosbiology.org 🧪 plos.io/43UVUPB

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Left: Predicted gene regulatory network of Streptomyces coelicolor based on 17 well-known regulators. Each node in the network represents a (regulatory) gene, and every edge represents a PWM predicted regulatory interaction between nodes. The edges colored in dark gray indicate strong PWM prediction scores, while the lighter gray shades represent weaker interactions. Matches within BGC regions are depicted as triangles. In six regions (black circled), the matches fall within a co-expressed region, highlighting their functional relation to these compounds. Right: Proposed biosynthetic pathway for assembly of desferrioxamines E and B. Main biosynthetic enzymes presented in bold face. DesG and DesH balance intracellular N-hydroxy-N-succinylcadaverine (HSC) and N-hydroxy-N-acetylcadaverine (HAC) concentrations by converting HSC to HAC. In the absence of DesG and/or DesH, the cells likely fail to produce sufficient levels of HAC, thereby strongly attenuating the production of DFOB. Although DesC has been shown to be able to catalyze the acetylation of N-hydroxycadaverine in vitro, the enzyme can only modestly compensate for the loss of DesH in vivo, underlining the important role played by DesG and DesH in DFOB production.

Left: Predicted gene regulatory network of Streptomyces coelicolor based on 17 well-known regulators. Each node in the network represents a (regulatory) gene, and every edge represents a PWM predicted regulatory interaction between nodes. The edges colored in dark gray indicate strong PWM prediction scores, while the lighter gray shades represent weaker interactions. Matches within BGC regions are depicted as triangles. In six regions (black circled), the matches fall within a co-expressed region, highlighting their functional relation to these compounds. Right: Proposed biosynthetic pathway for assembly of desferrioxamines E and B. Main biosynthetic enzymes presented in bold face. DesG and DesH balance intracellular N-hydroxy-N-succinylcadaverine (HSC) and N-hydroxy-N-acetylcadaverine (HAC) concentrations by converting HSC to HAC. In the absence of DesG and/or DesH, the cells likely fail to produce sufficient levels of HAC, thereby strongly attenuating the production of DFOB. Although DesC has been shown to be able to catalyze the acetylation of N-hydroxycadaverine in vitro, the enzyme can only modestly compensate for the loss of DesH in vivo, underlining the important role played by DesG and DesH in DFOB production.

Most #biosynthetic gene clusters remain uncharacterized. @marnixmedema.bsky.social @gillesvanwezel.bsky.social &co integrate #GRN analysis & global expression data to identify desJGH as an operon essential for #biosynthesis of #desferrioxamineB in Streptomyces @plosbiology.org 🧪 plos.io/43UVUPB

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Left: Predicted gene regulatory network of Streptomyces coelicolor based on 17 well-known regulators. Each node in the network represents a (regulatory) gene, and every edge represents a PWM predicted regulatory interaction between nodes. The edges colored in dark gray indicate strong PWM prediction scores, while the lighter gray shades represent weaker interactions. Matches within BGC regions are depicted as triangles. In six regions (black circled), the matches fall within a co-expressed region, highlighting their functional relation to these compounds. Right: Proposed biosynthetic pathway for assembly of desferrioxamines E and B. Main biosynthetic enzymes presented in bold face. DesG and DesH balance intracellular N-hydroxy-N-succinylcadaverine (HSC) and N-hydroxy-N-acetylcadaverine (HAC) concentrations by converting HSC to HAC. In the absence of DesG and/or DesH, the cells likely fail to produce sufficient levels of HAC, thereby strongly attenuating the production of DFOB. Although DesC has been shown to be able to catalyze the acetylation of N-hydroxycadaverine in vitro, the enzyme can only modestly compensate for the loss of DesH in vivo, underlining the important role played by DesG and DesH in DFOB production.

Left: Predicted gene regulatory network of Streptomyces coelicolor based on 17 well-known regulators. Each node in the network represents a (regulatory) gene, and every edge represents a PWM predicted regulatory interaction between nodes. The edges colored in dark gray indicate strong PWM prediction scores, while the lighter gray shades represent weaker interactions. Matches within BGC regions are depicted as triangles. In six regions (black circled), the matches fall within a co-expressed region, highlighting their functional relation to these compounds. Right: Proposed biosynthetic pathway for assembly of desferrioxamines E and B. Main biosynthetic enzymes presented in bold face. DesG and DesH balance intracellular N-hydroxy-N-succinylcadaverine (HSC) and N-hydroxy-N-acetylcadaverine (HAC) concentrations by converting HSC to HAC. In the absence of DesG and/or DesH, the cells likely fail to produce sufficient levels of HAC, thereby strongly attenuating the production of DFOB. Although DesC has been shown to be able to catalyze the acetylation of N-hydroxycadaverine in vitro, the enzyme can only modestly compensate for the loss of DesH in vivo, underlining the important role played by DesG and DesH in DFOB production.

Most #biosynthetic gene clusters remain uncharacterized. @marnixmedema.bsky.social @gillesvanwezel.bsky.social &co integrate #GRN analysis & global expression data to identify desJGH as an operon essential for #biosynthesis of #desferrioxamineB in Streptomyces @plosbiology.org 🧪 plos.io/43UVUPB

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🍃 Comparative analysis of #GRN identifies conserved regulators in seed plants
by Donat Wulf, Andrea Bräutigam
doi.org/phrb #GRN #PlantScience

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#GRN #Globalrecruitersnetwork #ExecutiveRecruiting #EngagedSearch #ClientAcquisition #RecruiterLife #recruiter #WindyCityWins

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