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Dive into the research topics where Rafaela Lacerda is active.

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Featured researches published by Rafaela Lacerda.


Cellular and Molecular Life Sciences | 2017

More than just scanning: the importance of cap-independent mRNA translation initiation for cellular stress response and cancer

Rafaela Lacerda; Juliane Menezes; Luísa Romão

The scanning model for eukaryotic mRNA translation initiation states that the small ribosomal subunit, along with initiation factors, binds at the cap structure at the 5′ end of the mRNA and scans the 5′ untranslated region (5′UTR) until an initiation codon is found. However, under conditions that impair canonical cap-dependent translation, the synthesis of some proteins is kept by alternative mechanisms that are required for cell survival and stress recovery. Alternative modes of translation initiation include cap- and/or scanning-independent mechanisms of ribosomal recruitment. In most cap-independent translation initiation events there is a direct recruitment of the 40S ribosome into a position upstream, or directly at, the initiation codon via a specific internal ribosome entry site (IRES) element in the 5′UTR. Yet, in some cellular mRNAs, a different translation initiation mechanism that is neither cap- nor IRES-dependent seems to occur through a special RNA structure called cap-independent translational enhancer (CITE). Recent evidence uncovered a distinct mechanism through which mRNAs containing N6-methyladenosine (m6A) residues in their 5′UTR directly bind eukaryotic initiation factor 3 (eIF3) and the 40S ribosomal subunit in order to initiate translation in the absence of the cap-binding proteins. This review focuses on the important role of cap-independent translation mechanisms in human cells and how these alternative mechanisms can either act individually or cooperate with other cis-acting RNA regulons to orchestrate specific translational responses triggered upon several cellular stress states, and diseases such as cancer. Elucidation of these non-canonical mechanisms reveals the complexity of translational control and points out their potential as prospective novel therapeutic targets.


RNA Biology | 2018

eIF3: a factor for human health and disease

Andreia Gomes-Duarte; Rafaela Lacerda; Juliane Menezes; Luísa Romão

ABSTRACT The eukaryotic initiation factor 3 (eIF3) is one of the most complex translation initiation factors in mammalian cells, consisting of several subunits (eIF3a to eIF3m). It is crucial in translation initiation and termination, and in ribosomal recycling. Accordingly, deregulated eIF3 expression is associated with different pathological conditions, including cancer. In this manuscript, we discuss the interactome and function of each subunit of the human eIF3 complex. Furthermore, we review how altered levels of eIF3 subunits correlate with neurodegenerative disorders and cancer onset and development; in addition, we evaluate how such misregulation may also trigger infection cascades. A deep understanding of the molecular mechanisms underlying eIF3 role in human disease is essential to develop new eIF3-targeted therapeutic approaches and thus, overcome such conditions.


Cellular Oncology | 2018

Genetics of personalized medicine: cancer and rare diseases

Inês Teles Siefers Alves; Manuel Condinho; Sónia Custódio; Bruna F. Pereira; Rafael Fernandes; Vânia Gonçalves; Paulo J. Costa; Rafaela Lacerda; Ana Rita Marques; Patrícia Martins-Dias; Gonçalo Nogueira; Ana Neves; Patrícia Pinho; Raquel Rodrigues; Eva Rolo; Joana M. Silva; André Travessa; Rosário Pinto Leite; Ana Paula Geraldo de Sousa; Luísa Romão

The 21st annual meeting of the Portuguese Society of Human Genetics (SPGH), organized by Luísa Romão, Ana Sousa and Rosário Pinto Leite, was held in Caparica, Portugal, from the 16th to the 18th of November 2017. Having entered an era in which personalized medicine is emerging as a paradigm for disease diagnosis, treatment and prevention, the program of this meeting intended to include lectures by leading national and international scientists presenting exceptional findings on the genetics of personalized medicine. Various topics were discussed, including cancer genetics, transcriptome dynamics and novel therapeutics for cancers and rare disorders that are designed to specifically target molecular alterations in individual patients. Several panel discussions were held to emphasize (ethical) issues associated with personalized medicine, including genetic cancer counseling.


RNA | 2017

Cap-independent translation ensures mTOR expression and function upon protein synthesis inhibition

Ana Marques-Ramos; Marco Candeias; Juliane Menezes; Rafaela Lacerda; Margaret M. Willcocks; Alexandre Teixeira; Nicolas Locker; Luísa Romão


Seminário no âmbito de BioSys PhD programme at BioISI, Faculdade de Ciências da Universidade de Lisboa, 23 fevereiro 2017 | 2017

Non-canonical translation initiation of proteins with potential relevance in colorectal cancer

Rafaela Lacerda; Luísa Romão


2º Dia do Jovem Investigador do Instituto Nacional de Saúde Doutor Ricardo Jorge, 8 maio 2017 | 2017

Expression of human UPF1 is regulated by a cap-independent translation initiation mechanism

Rafaela Lacerda; Juliane Menezes; Luísa Romão


2º Dia do Jovem Investigador do Instituto Nacional de Saúde Doutor Ricardo Jorge, 8 maio 2017 | 2017

Brand New World of Translation

Ana Neves; Rafaela Lacerda; Romão Romão; Marco Candeias


2º Dia do Jovem Investigador do Instituto Nacional de Saúde Doutor Ricardo Jorge, 8 maio 2017 | 2017

Human AGO1 5’UTR mediates an elF4G-enhanced but cap-independent mechanism of translation initiation

Rafaela Lacerda; Juliane Menezes; Luísa Romão


21ª Reunião da Sociedade Portuguesa de Genética Humana, 16-18 novembro 2017 | 2017

IRES-dependent translation of shorter p53 isoforms is affected by mutations in p53

Rafaela Lacerda; Ana Neves; M Maruo; Luísa Romão; Michiyuki Matsuda; Marco Candeias


21ª Reunião Anual da Sociedade Portuguesa de Genética Humana, 16-18 novembro 2017 | 2017

Shorter p53 isoform expression through na Internal Ribosome Entry Site (IRES) in p53 mRNA

Ana Neves; Rafaela Lacerda; Ana Marques-Ramos; Luísa Romão; Michiyuki Matsuda; Marco Candeias

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Alexandre Teixeira

Universidade Nova de Lisboa

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