logo

RNA functions in parasite-host communication in the gut

Sector: Education • Location: United Kingdom

Source: EU Funding & Tenders Portal

Project
Ended

Cross-species communication is required for proper functioning of the mammalian gut, where different organisms share resources, coordinate digestion and maintain homeostasis. In many animals, parasitic worms (helminths) are part of this ecosystem, where they communicate through the release of bio-active molecules that promote immunological tolerance and modulate gut functions. Mechanisms of cross-

Project Information FAQ

Project Information

4 Q
The project “RNA functions in parasite-host communication in the gut” is an infrastructure initiative in the Education sector, located in United Kingdom. Taiyo aggregates data on it from EU Funding & Tenders Portal.

Want to explore the full details? View the full report

Participants

Sponsoring Agency

Obfuscated Data

Company

Obfuscated Data

Status

Original status

ended

Taiyo status

Obfuscated Data

Taiyo last update

00-00-0000

Available timestamps

00-00-0000

Available timestamp type

Obfuscated Data

Contact

Contact name

Obfuscated Data

Phone

0000000000

Email

ObfuscatedData@email.com

Address

Obfuscated Data, Obfuscated data, obfuscated data, Obfuscated data

Description

Description

Cross-species communication is required for proper functioning of the mammalian gut, where different organisms share resources, coordinate digestion and maintain homeostasis. In many animals, parasitic worms (helminths) are part of this ecosystem, where they communicate through the release of bio-active molecules that promote immunological tolerance and modulate gut functions. Mechanisms of cross-species communication are still not well understood and my lab discovered that ribonucleic acids (RNA) are one of the products helminths release to directly influence host cells. The overall goal of RNACOM is to determine how gastrointestinal parasites use this novel form of RNA communication to regulate the gut epithelium and to develop strategies to block the communication mechanism during infection. We have recently discovered a specific Argonaute protein that gastrointestinal nematodes use to transmit parasite RNAs to mouse cells. We will target this protein to identify parasite-host RNA-RNA interactions that occur during chronic infection (Aim 1). We will then determine the specificity and function of parasite RNA transmission to mouse cells in the epithelium using model organoids and in vivo imaging (Aim 2) and will determine the mechanism of action of parasite RNAs in host gene suppression using synthetic and recombinant strategies (Aim 3). Finally we use genetic tools in the mouse model to determine the function of cross-species RNA-RNA interactions during infection, while testing new strategies to block RNA transmission by the parasite (Aim 4). RNACOM will bring key quantitative and molecular understanding to the processes by which RNA from one species can influence another, advancing a frontier area in RNA biology while testing new strategies of parasite control. In parallel RNACOM develops a unique platform for identifying new gene networks that underpin intestinal cell functions and gut health.

Original sub-sector

Obfuscated

Original Currency

USD

Original budget

000000000000000

Procurement method

Obfuscated Data

Budget

000000000000000

Location

Region

Obfuscated

Country

Obfuscated

State

Obfuscated Data

County

Obfuscated

Location

Obfuscated Data, Obfuscated data, obfuscated data, Obfuscated data

Source

Source reliability

High

Data quality score

100%

Source

Obfuscated Data

URL

obfuscated_data,obfuscateddata.com

More Details

Project Type

Obfuscated Data

Article Published Date

Obfuscated Data