Publications by authors named "Jose Fernandez-Fernandez"

Ribosomal proteins have important roles in maintaining the structure and function of mature ribosomes, but they also drive crucial rearrangement reactions during ribosome biogenesis. The contribution of most, but not all, ribosomal proteins to ribosome synthesis has been previously analyzed in the yeast Saccharomyces cerevisiae. Herein, we characterize the role of yeast eL15 during 60S ribosomal subunit formation.

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The structural composition of the cell wall of grape skins is related to the cell wall integrity and subsequent extraction of the different compounds that are contained inside vacuoles and also the cell wall breakdown products. Different reports have established that methyl jasmonate (MeJ) produces changes in the composition of the grape skin cell wall. The use of elicitors to promote the production of secondary metabolites in grapes has been studied in several reports; however, its study linked to nanotechnology is less developed.

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Alzheimer's disease (AD) is known to be caused by amyloid β-peptide (Aβ) misfolded into β-sheets, but this knowledge has not yet led to treatments to prevent AD. To identify novel molecular players in Aβ toxicity, we carried out a genome-wide screen in , using a library of 5154 gene knock-out strains expressing Aβ. We identified 81 mammalian orthologue genes that enhance Aβ toxicity, while 157 were protective.

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Sarcoidosis is a multisystem chronic inflammatory disease of unknown etiology, characterized by non-caseating granulomas. Sarcoidosis has the potential to involve every tissue in the body, which mainly affect the lymphatic system and lungs; gastrointestinal system, and particularly the colon, is an extremely rare location. We report the case of a 64-year-old male with history of pulmonary and cutaneous sarcoidosis diagnosed with neoplasm in the hepatic flexure of the colon and a polyp with high-grade dysplasia in the transverse colon by colonoscopy after a positive fecal occult blood test.

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There is a significant gap in employment between people with and without disabilities, despite the importance of work in achieving their independence, autonomy, and integration into society. There are several reasons that cause this gap to exist, such as: people with disabilities feel less prepared, there is a stigma or discrimination to hire people with disabilities and the incompatibility of schedules due to medical issues, among others. That is why entrepreneurship emerges as a good option for the integration of people with disabilities in our society, improves their confidence and promotes some of the Sustainable Development Goals set out in the 2030 Agenda.

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Background: Proanthocyanidins (PAs) are phenolic compounds present in skins and seeds of wine grapes and have great implications for plant physiology and wine quality. There are several strategies to increase PA concentration, such as application of elicitors methyl jasmonate (MeJ) and benzothiadiazole (BTH), compounds that can stimulate defence responses like phenolic compound biosynthesis in wine grapes, which have been applied mainly at veraison (beginning of ripening). We recently evaluated the application of MeJ and BTH on Vitis vinifera cv.

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Article Synopsis
  • Nascent polypeptide chains exit the ribosome via the nascent polypeptide exit tunnel (NPET), which is influenced by specific ribosomal proteins, highlighting the complexity of translation and ribosome assembly.
  • The protein eL39 plays a crucial role in the construction of the NPET, facilitating both early stages of pre-60S assembly and proper protein folding during translation.
  • Research indicates that eL39 is involved in alternative pathways of ribosome assembly, suggesting similarities with bacterial ribosomal subunit biogenesis.
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One alternative for adapting viticulture to high temperatures and the scarcity of water is the development of new varieties adapted to such conditions. This work describes six new genotypes, derived from "Monastrell" × "Cabernet Sauvignon" (MC16, MC19, MC72, MC80) and "Monastrell" × "Syrah" (MS104, MS49) crosses, grown under deficit irrigation and rainfed conditions in a semi-arid wine-producing area (Murcia, southeastern Spain). The effect of genotype, year, and irrigation treatment on the phenological, productiveness, morphological, and grape quality data was evaluated.

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The application of methyl jasmonate (MeJ) as an elicitor to enhance secondary metabolites in grapes and wines has been studied, but there is little information about its use in conjunction with nanotechnology and no information about its effects on wine volatile compounds. This led us to study the impact of nanoparticles doped with MeJ (Nano-MeJ, 1mM MeJ) on the volatile composition of Monastrell wines over three seasons, compared with the application of MeJ in a conventional way (10 mM MeJ). The results showed how both treatments enhanced fruity esters in wines regardless of the vintage year, although the increase was more evident when grapes were less ripe.

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The small ribosomal subunit protein Rps15/uS19 is involved in early nucleolar ribosome biogenesis and subsequent nuclear export of pre-40S particles to the cytoplasm. In addition, the C-terminal tail of Rps15 was suggested to play a role in mature ribosomes, namely during translation elongation. Here, we show that Rps15 not only functions in nucleolar ribosome assembly but also in cytoplasmic pre-40S maturation, which is indicated by a strong genetic interaction between Rps15 and the 40S assembly factor Ltv1.

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Nitrogen composition on grapevines has a direct effect on the quality of wines since it contributes to develop certain volatile compounds and assists in the correct kinetics of alcoholic fermentation. Several strategies can be used to ensure nitrogen content in grapes and one of them could be the use of elicitors such as methyl jasmonate. The use of this elicitor has been proven to be efficient in the production of secondary metabolites which increases the quality of wines, but its use also has some drawbacks such as its low water solubility, high volatility, and its expensive cost.

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MicroRNAs (miRNAs) participate in atrial remodeling and atrial fibrillation (AF) promotion. We determined the circulating miRNA profile in patients with AF and heart failure with reduced ejection fraction (HFrEF), and its potential role in promoting the arrhythmia. In plasma of 98 patients with HFrEF (49 with AF and 49 in sinus rhythm, SR), differential miRNA expression was determined by high-throughput microarray analysis followed by replication of selected candidates.

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Mitochondria play key roles in ATP supply, calcium homeostasis, redox balance control and apoptosis, which in neurons are fundamental for neurotransmission and to allow synaptic plasticity. Their functional integrity is maintained by mitostasis, a process that involves mitochondrial transport, anchoring, fusion and fission processes regulated by different signaling pathways but mainly by the peroxisome proliferator-activated receptor-γ coactivator-1α (PGC-1α). PGC-1α also favors Ca homeostasis, reduces oxidative stress, modulates inflammatory processes and mobilizes mitochondria to where they are needed.

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The gene encodes the pore-forming α subunit of the voltage-gated Ca2.1 Ca channel, essential in neurotransmission, especially in Purkinje cells. Mutations in result in great clinical heterogeneity with progressive symptoms, paroxysmal events or both.

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In recent years, it has been demonstrated that the application of elicitors such as methyl-jasmonate (MeJ) and benzothiadiazole (BTH) to wine grapes can increase their phenolic and aromatic compounds if they are treated at the beginning of ripening (veraison). However, the veraison period is short, and it is not always possible to apply the treatments in a few days. Therefore, it would be of great interest to optimize the moment of elicitor application or extend the treatment period.

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Arachidonic acid (AA) is a fatty acid involved in the modulation of several ion channels. Previously, we reported that AA activates the high conductance Ca- and voltage-dependent K channel (BK) in vascular smooth muscle depending on the expression of the auxiliary β1 subunit. Here, using the patch-clamp technique on BK channel co-expressed with β1 subunit in a heterologous cell expression system, we analyzed whether AA modifies the three functional modules involved in the channel gating: the voltage sensor domain (VSD), the pore domain (PD), and the intracellular calcium sensor domain (CSD).

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TRPP3 (also called PKD2L1) is a nonselective, cation-permeable channel activated by multiple stimuli, including extracellular pH changes. TRPP3 had been considered a candidate for sour sensor in humans, due to its high expression in a subset of tongue receptor cells detecting sour, along with its membership to the TRP channel family known to function as sensory receptors. Here, we describe the functional consequences of two non-synonymous genetic variants (R278Q and R378W) found to be under strong positive selection in an Ethiopian population, the Gumuz.

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Early-onset severe spinocerebellar ataxia 42 with neurodevelopmental deficits (SCA42ND, MIM#604065) is an ultrarare autosomal dominant syndrome related to de novo CACNA1G gain-of-function pathogenic variants. All patients with SCA42ND show cerebellar atrophy and/or hypoplasia on neuroimaging and share common features such as dysmorphic features, global developmental delay, and axial hypotonia, all manifesting within the first year of life. To date, only 10 patients with SCA42ND have been reported with functionally confirmed gain-of-function variants, bearing either of two recurrent pathogenic variants.

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Article Synopsis
  • Hepatobiliary resections are complicated because of the liver's intricate anatomy, and 3D printing (3DP) offers customized anatomical models for each patient.
  • A study involving 35 patients at eight different centers assessed the accuracy of 3DP models against traditional imaging methods (CT/MRI) for surgical planning and education.
  • The results showed that 3DP models closely matched the actual surgical findings and were viewed positively by professionals, with a notable improvement in learning outcomes, although they didn't significantly change surgical results.
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The aromatic profile of a wine is one of the main characteristics appreciated by consumers. Due to climate change, vineyards need to adapt to new conditions, and one of the strategies that might be followed is to develop new white varieties from Monastrell and other cultivars by means of intervarietal crosses, since white varieties are a minority in south-eastern Spain. Such crosses have already been obtained and have been seen to provide quality white wines of high acidity and with a good aromatic composition.

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Health religious organizations tend to offer individual attention to patients in line with their spiritual character and, at the same time, the highest service quality. This study puts the attention on the nurse-patient relationship and empirically explores a theoretical model that links nurses' suffering at work with personal's willingness to engage in a therapeutic and spiritual relationship with patients and the consequent effect on quality. Data has been collected in the city of Madrid (Spain) in the month of June 2019 in Santa Elena Clinic.

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Human mutations in the CACNA1A gene that encodes the pore-forming α subunit of the voltage-gated Ca2.1 (P/Q-type) Ca channel cause multiple neurological disorders including sporadic and familial hemiplegic migraine, as well as cerebellar pathologies such as episodic ataxia, progressive ataxia, and early-onset cerebellar syndrome consistent with the definition of congenital ataxia (CA), with presentation before the age of 2 years. Such a pathological role is in accordance with the physiological relevance of Ca2.

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In eukaryotes, the beak structure of 40S subunits is formed by the protrusion of the 18S rRNA helix 33 and three ribosomal proteins: eS10, eS12 and eS31. The exact role of these proteins in ribosome biogenesis is not well understood. While eS10 is an essential protein encoded by two paralogous genes in , eS12 and eS31 are not essential proteins encoded by the single-copy genes and , respectively.

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Article Synopsis
  • The study focuses on Ppz1, a protein phosphatase from the yeast Saccharomyces cerevisiae, which is known for its toxicity when overexpressed and is regulated by two subunits, Hal3 and Vhs3.
  • Researchers found that the toxicity associated with excessive Ppz1 expression is linked to its increased phosphatase activity rather than affecting coenzyme A biosynthesis.
  • They identified ribosomal proteins and assembly factors as potential suppressors of Ppz1 toxicity and suggested that Ppz1's overexpression disrupts normal protein synthesis, indicated by changes in eIF2α phosphorylation.
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