logo

Structural analysis of Rad51 paralogues involved in recombinational DNA repair

Sector: Hospital • Location: United Kingdom

Source: EU Funding & Tenders Portal

Project
Ended

Homologous recombination (HR) is a major mechanism for repairing DNA double-strand breaks (DSBs). A DSB converts one normal chromosome into two pathological chromosomes, making it the severest form of DNA damage. Accordingly, defects in HR lead to genome instability, a potent driver of tumorigenesis. Although Rad51 is the central enzyme involved in HR, several auxiliary factors promote HR by stimu

Project Information FAQ

Project Information

3 Q
The project “Structural analysis of Rad51 paralogues involved in recombinational DNA repair” is an infrastructure initiative in the Hospital 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

Homologous recombination (HR) is a major mechanism for repairing DNA double-strand breaks (DSBs). A DSB converts one normal chromosome into two pathological chromosomes, making it the severest form of DNA damage. Accordingly, defects in HR lead to genome instability, a potent driver of tumorigenesis. Although Rad51 is the central enzyme involved in HR, several auxiliary factors promote HR by stimulating Rad51. Rad51 paralogs comprise one family of evolutionarily conserved auxiliary factor. Unlike other auxiliary factors, Rad51 paralogs are notorious for their biochemical intractability, a trait that has greatly hindered progress in understanding their function, which in turn has precluded a more complete understanding of HR as a whole. This proposal aims to uncover the molecular mechanisms underlying Rad51 potentiation by Rad51 paralogs. To achieve this, we will employ an interdisciplinary approach combining structural biology, biophysics, biochemistry, and genetics. This proposal is particularly well-placed to deliver novel insights because the historical obstacle in the analysis of Rad51 paralogs—the native purification of functional protein of sufficient yield and quantity—has already been overcome by the Researcher. Furthermore, the Supervisor has extensive expertise in cryo-electron microscopy, which is now a viable approach to visualise the finer structural features of proteins that have been recalcitrant to classical techniques such as X-ray crystallography. Thus, by uniting the experiences of the Researcher and Supervisor, this fellowship has the potential to answer long-standing and significant questions in the field of HR. In addition to maintaining genome stability, HR plays critical roles in gametogenesis, chromosomal biology, and evolution. If awarded, this proposal therefore has the potential to impact several disciplines within the life sciences, and this is especially true given the interdisciplinary nature of the proposed research.

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