Tiago Bandeiras

Our Research

Our research focuses mainly on structural studies of relevant human drug targets involved in chromatin remodelling (e.g. RuvBL1/2), and kinases that play key cellular roles (e.g. Polo-like kinase-1), both known to be overexpressed in highly proliferating cells and in many human tumours. These structural studies are part of our structure-based drug design preclinical projects developed in strong collaboration with pharmaceutical companies like Merck Serono Pharma and Bayer.

Our group is also interested in understanding the mechanisms behind oxidative stress detoxification by superoxide reductases. Until recently, it was believed that elimination of superoxide was performed only by superoxide dismutases, which oxidize and reduce it to oxygen and hydrogen peroxide, respectively. However, in recent years a second process was established for superoxide elimination: its reduction, by superoxide reductases (SORs). The goal of our research is to identify and characterize the structural determinants of the superoxide reduction mechanism, an important oxygen stress response system.

More recently, we started to study the structural determinants behind centriole biogenesis. Centrioles are the main constituents of centrosomes (the principal microtubule-organizing centre of most animal cells, regulating cell shape and polarity in interphase, and spindle pole organization during mitosis), which are often supranumerary and disfunctional in a variety of cancers.  Centrioles are cylindrical structures, made of nine microtubules triplets organized in a nine-fold symmetry. We ask whether the structure and oligomerization state of the proteins involved in centriole biogenesis are the key players for the observed organelle architecture.

Highlights

Research Highlights

Microtubule-Associated Protein BLD10/CEP135 The work entitled "BLD10/CEP135 Is a Microtubule-Associated Protein that Controls the Formation of the Flagellum Central Microtubule Pair" has just been accepted in Developmental Cell. Cilia and flagella are involved in a variety of processes and human diseases, including ciliopathies and sterility. Their motility is often controlled by a central microtubule (MT) pair localized within the ciliary MT-based skeleton, the axoneme. We characterized the formation of the motility apparatus in detail in Drosophila spermatogenesis. We show that assembly of...

Read more

News

  • 1
  • 2
  • 3
Prev Next

Job opportunities

Job opportunities

Join our Group!! We are currently looking for highly motivated students to fill one open position in the project "PTDC/BIA-PRO/111940/2009", Structural determinants of superoxide reduction – A detoxification system essential for life.  

Read more

Team Partners

Team Partners

MAIN TEAM PARTNERS - Merck Serono and Bayer are the team main partners in the development of pre-clinical projects in the Structure-based drug design field.   If you represent a pharmaceutical company or academic laboratory, and you are looking for a partner, contact us.            

Read more

Best Crystals 2010

Best Crystals 2010

Our team produced protein crystals that were considered to be the most beautiful crystals in 2010. The cover illustration of the January 2011 issue of Acta Crystallographica Section F is a montage of the best in crystal photomicrographs from crystallization communications published in 2010.   Our team included two different protein crystals in this year's cover. These crystals were published in the papers: Acta Crystallogr Sect F Struct Biol Cryst Commun. 2010 May 1;66(Pt 5):605-7. Acta Crystallogr Sect F Struct Biol Cryst Commun. 2010 Mar 1;66(Pt 3):316-9.

Read more

Tiago Bandeiras | Macromolecular Crystallography Unit 2011

Log in to your account or Create an account