#RNAinterference
🧬The RNA laboratory in @uni-wuppertal.bsky.social with Prof Martin Simon and colleagues, used phagosomal delivery of heteroduplex #RNA in #Paramecium to shed light into the initial recognition of exogenous RNAs and entry into the #RNAinterference pathway.
Full story: www.nature.com/articles/s42...
January 12, 2026 at 10:20 AM
Plants may control their own microbiomes: Scientists discovered stable RNA on plant leaves that can regulate microbes, revealing a new layer of plant-environment interaction.

#PlantMicrobiome #RNAInterference #PlantScience #MicrobialEcology #CrossKingdomRNAi #EarthDotCom #EarthSnap #Earth
Plants may control their own microbiomes
Scientists discovered stable RNA on plant leaves that can regulate microbes, revealing a new layer of plant-environment interaction.
www.earth.com
January 6, 2025 at 2:34 PM
The Gene Silencing Market is booming with innovations in genetic research, rising genetic disorder cases, and growing use in therapeutics. Expected to grow at 17.6% CAGR from 2025-2032, the market was valued at $3.7B in 2024.
#GeneSilencingMarket, #GeneticResearch, #GeneTherapy, #RNAInterference
Global Gene Silencing Market Analysis And Trends 2025
Discover key insights into the Global Gene Silencing Market. Explore trends, growth drivers, and key players shaping the future of gene silencing technologies by 2025.
www.statsandresearch.com
March 31, 2025 at 9:35 AM
Cutting edge publication by Kumaraswamy & Huang!

Plant resistance: scientific basis and latest research progress

tinyurl.com/bddfre9z

#Agriculture

#Insect

#Disease

#Pesticide

#RNAinterference

#CropResilience

Fig. 1
August 26, 2026 at 12:37 PM
Cutting edge publication by Kumaraswamy & Huang!

Plant resistance: scientific basis and latest research progress

tinyurl.com/bddfre9z

#Agriculture

#Insect

#Disease

#Pesticide

#RNAinterference

#CropResilience

#TransgenicDSRNA

#DSRNA

#Pathogen

#CropProtection

#RibonucleicAcid
August 26, 2026 at 12:57 PM
Cutting edge publication by Kumaraswamy & Huang!

Plant resistance: scientific basis and latest research progress

tinyurl.com/bddfre9z

#Agriculture

#Insect

#Disease

#Pesticide

#RNAinterference

#CropResilience

#ChemicalDefence

#InnateImmuneSystem

#Pathogen

#Effector

#Toxin

Fig. 2
August 26, 2026 at 12:42 PM
awesome story by @antonioregalado #rnainterference
November 23, 2024 at 3:18 PM
#RNAinterference drug developer #SanegeneBio leads our round-up of this week's #biotechfinancings, with a $110 million Series B backed by recent partner #EliLilly.

pharmaphorum.com/news/sanegen...
SanegeneBio raises $110m for RNAi, plus other financings
Biotech financings this week include SanegeneBio's Lilly-backed $110m Series B, with Sidera, D3 Bio, BlossomHill, and Prolynx also raising new funds.
pharmaphorum.com
December 12, 2025 at 10:22 AM
Cryo-EM reveals how HSP90 chaperones guide RNA-induced silencing complex assembly

🤖 IA: It's not clickbait ✅
👥 Users: It's not clickbait ✅

#rnainterference #argonaute #chaperoneproteins

View full AI summary:
Cryo-EM reveals how HSP90 chaperones guide RNA-induced silencing complex assembly
This study uncovers the structural mechanism by which the RNA-induced silencing complex (RISC), a key effector of RNA interference, is assembled in human cells. RISC is composed of an Argonaute (AGO) protein bound to a small RNA, such as a microRNA or siRNA, which guides gene silencing. Although it has long been known that molecular chaperones like HSP70 and HSP90 are required for loading small RNA duplexes onto AGO proteins, the precise structural process remained unclear. Using cryogenic electron microscopy, the authors resolved the structure of a human AGO–HSP90–p23 complex, termed the AGO maturation complex (AMC). This complex captures AGO in an open, RNA-free conformation in which its domains are separated and stabilized by the HSP90 dimer. The arrangement exposes a positively charged cleft that allows binding of small RNA duplexes. Importantly, the study shows that AGO folding and maturation are not driven by single-stranded RNA alone but require a double-stranded RNA duplex with a 5′ phosphate, which acts as a cofactor to promote proper structural assembly. The findings demonstrate that the chaperone system does more than stabilize proteins—it actively orchestrates AGO folding and RNA loading. The RNA duplex itself plays a previously unrecognized role as a chaperone-like element guiding protein assembly. This mechanism was validated using biochemical reconstitution experiments showing that the purified AMC can recapitulate RISC assembly in vitro. Overall, the research provides a detailed molecular explanation for how RISC is formed and highlights the coordinated action of chaperones and RNA substrates in regulating gene silencing machinery. These insights also have implications for improving the design of RNA-based therapeutics, such as siRNA drugs, by revealing structural requirements for efficient AGO loading.
en.killbait.com
June 12, 2026 at 3:52 AM
🎥 Missed the webinar? The replay is now available!
Catch up on the fascinating session exploring RNA interference – from basic science to groundbreaking clinical applications in transplantation.

#RNAinterference #TransplantInnovation #PoweredByESOT
RNA interference
go.esot.org
November 26, 2024 at 3:32 PM
⏰ Last call! Don’t miss tomorrow’s webinar on RNA interference and its clinical impact on transplantation. Join the discussion led by leading experts in the field! 🙌
🗓️ 12 November
🕕 17:30 CET
#RNAinterference #TransplantScience #PoweredByESOT
Register today
go.esot.org
November 10, 2024 at 11:00 PM
🧬 Excited for our upcoming webinar on RNA interference? Join us to explore this game-changing technology from basic biology to clinical breakthroughs in transplantation! 🚀
🗓️ 12 November
🕕 17:30 CET
#RNAinterference #TransplantScience #PoweredByESOT
Register today
go.esot.org
November 7, 2024 at 11:00 PM