Rute Matos Luís

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Universidade Nova de Lisboa Instituto de Tecnologia Química e Biológica
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Recent Grants

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Ribonucleases as tools to combat the foodborne pathogen Campylobacter jejuni.

Open Date: 2018-10-01

Close Date: 2021-09-01

Grant: Close

Determinação da arquitectura e a estratégia de degradação do RNA da Ribonuclease R: implicações para o controlo de agentes patogénicos

Open Date: 2016-06-01

Close Date: 2019-12-01

Grant: Close

Molecular, Structural and Cellular Microbiology

Open Date: 2015-01-01

Close Date:

Grant: Close

Targets and mechanism of action of a novel enzyme involved in eukaryotic RNA degradation

Open Date: 2014-03-15

Close Date: 2015-03-14

Grant: Close

Targets and mechanism of action of a novel enzyme involved in eukaryotic RNA degradation

Open Date: 2014-03-01

Close Date: 2015-03-01

Articles (11)

How hydrolytic exoribonucleases impact human disease: Two sides of the same story

RNAs are extremely important molecules inside the cell, which perform many different functions. For example, messenger RNAs, transfer RNAs and ribosomal RNAs are involved in protein synthesis, whereas noncoding RNAs have numerous regulatory roles. Ribonucleases (RNases) are the enzymes responsible for the processing and degradation of all types of RNAs, having multiple roles in every aspect of RNA metabolism. However, the involvement of RNases in disease is still not well understood. This review focuses on the involvement of the RNase II/RNB family of 3′–5′ exoribonucleases in human disease. This can be attributed to direct effects, whereby mutations in the eukaryotic enzymes of this family [defective in sister chromatid joining (Dis3; or Rrp44), Dis3‐like exonuclease 1 (Dis3L1; or Dis3L) and Dis3‐like exonuclease 2 (Dis3L2)] are associated with a disease, or indirect effects, whereby mutations in the prokaryotic counterparts of RNase II/RNB family (RNase II and/or RNase R) affect the physiology and virulence of several human pathogens. In this review, we compare the structural and biochemical characteristics of the members of the RNase II/RNB family of enzymes. The outcomes of mutations impacting enzymatic function are revisited, in terms of both the direct and indirect effects on disease. Furthermore, we also describe the severe acute respiratory syndrome coronavirus 2 (SARS‐CoV‐2) viral exoribonuclease and its importance to combat the COVID‐19 pandemic. As a result, RNases may be a good therapeutic target to reduce bacterial and viral pathogenicity. These are the two perspectives on RNase II/RNB family enzymes that are presented in this review.

Year:

2022

Collaborators (13)

Cecília Maria Arraiano

Universidade de Aveiro

PORTUGAL

Margarida Archer

NOVA University of Lisbon

PORTUGAL

Bertrand raynal

Institut Pasteur

FRANCE

Tiago Cordeiro

Head of Laboratory (MOSTMICRO-ITQB)

Universidade Nova de Lisboa Instituto de Tecnologia Química e Biológica

PORTUGAL

Diana Lousa

Universidade de Aveiro

PORTUGAL

Susana Marques Costa

Universidade Nova de Lisboa

PORTUGAL

Marta V. Cunha

Universidade Nova de Lisboa Instituto de Tecnologia Química e Biológica

PORTUGAL

Kenneth J McDowall

University of Leeds

UNITED KINGDOM

Hilde De Reuse

Université Paris Cité

FRANCE

Sandra C. Viegas

-

PORTUGAL

Cláudio Soares

Universidade de Aveiro

PORTUGAL

Katie Simmons

University of Leeds

UNITED KINGDOM

Sarah Newbury

Professor of RNA Biology

University of Sussex

UNITED KINGDOM
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