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1.
Front Microbiol ; 14: 1289844, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37928677

RESUMEN

Phenotype switching from a wild type (WT) to a slow-growing subpopulation, referred to as small colony variants (SCVs), supports an infectious lifestyle of Staphylococcus epidermidis, the leading cause of medical device-related infections. Specific mechanisms underlying formation of SCVs and involved in the shaping of their pathogenic potential are of particular interest for stable strains as they have been only rarely cultured from clinical specimens. As the SCV phenotype stability implies the existence of genetic changes, the whole genome sequence of a stable, hemin-dependent S. epidermidis SCV strain (named 49SCV) involved in a late prosthetic joint infection was analyzed. The strain was isolated in a monoculture without a corresponding WT clone, therefore, its genome was compared against five reference S. epidermidis strains (ATCC12228, ATCC14990, NBRC113846, O47, and RP62A), both at the level of the genome structure and coding sequences. According to the Multilocus Sequence Typing analysis, the 49SCV strain represented the sequence type 2 (ST2) regarded as the most prominent infection-causing lineage with a worldwide dissemination. Genomic features unique to 49SCV included the absence of the Staphylococcal Cassette Chromosome (SCC), ~12 kb deletion with the loss of genes involved in the arginine deiminase pathway, and frameshift-generating mutations within the poly(A) and poly(T) homopolymeric tracts. Indels were identified in loci associated with adherence, metabolism, stress response, virulence, and cell wall synthesis. Of note, deletion in the poly(A) of the hemA gene has been considered a possible trigger factor for the phenotype transition and hemin auxotrophy in the strain. To our knowledge, the study represents the first genomic characterization of a clinical, stable and hemin-dependent S. epidermidis SCV strain. We propose that previously unreported indels in the homopolymeric tracts can constitute a background of the SCV phenotype due to a resulting truncation of the corresponding proteins and their possible biological dysfunction. Streamline of genetic content evidenced by the loss of the SCC and a large genomic deletion can represent a possible strategy associated both with the SCV phenotype and its adaptation to chronicity.

2.
Genes (Basel) ; 14(10)2023 10 17.
Artículo en Inglés | MEDLINE | ID: mdl-37895299

RESUMEN

The goal of the study was to explore the spectrum of pathogenic variants in the RPGR gene in a group of male Polish patients with a retinitis pigmentosa (RP) phenotype. A total of 45 male index patients, including twins, being members of 44 families, were screened for pathogenic variants in the RPGR gene via the direct sequencing of PCR-amplified genomic DNA and underwent a comprehensive ophthalmological examination in one center located in Poland. A total of two pathogenic and five likely pathogenic variants in eight patients (18%) were detected in the studied cohort. Of these, five variants were novel, and five disease-causing variants (71%) were identified within the ORF15 mutational hotspot of the RPGR gene. The median age of onset of the disease was 10 years (range 6-14 years), the median age during the examination was 30 years (range 20-47 years), and the median visual acuity was 0.4 (range 0.01-0.7). The majority of patients had middle constriction of the visual field and thinning of the central foveal thickness. Dizygotic twins bearing the same hemizygous mutation showed a different retinal phenotype in regard to the severity of the symptoms. This is the first RPGR mutation screening in Poland showing a prevalence of 18% of RPGR pathogenic mutations and likely pathogenic variants in the studied cohort of male patients with an RP phenotype.


Asunto(s)
Proteínas del Ojo , Retinitis Pigmentosa , Humanos , Masculino , Niño , Adolescente , Adulto Joven , Adulto , Persona de Mediana Edad , Polonia , Proteínas del Ojo/genética , Linaje , Fenotipo , Retinitis Pigmentosa/patología
3.
Biomedicines ; 11(4)2023 Apr 15.
Artículo en Inglés | MEDLINE | ID: mdl-37189801

RESUMEN

Mitochondria are organelles necessary for oxidative phosphorylation. The interest in the role of mitochondria in the process of carcinogenesis results from the fact that a respiratory deficit is found in dividing cells, especially in cells with accelerated proliferation. The study included tumor and blood material from 30 patients diagnosed with glioma grade II, III and IV according to WHO (World Health Organization). DNA was isolated from the collected material and next-generation sequencing was performed on the MiSeqFGx apparatus (Illumina). The study searched for a possible relationship between the occurrence of specific mitochondrial DNA polymorphisms in the respiratory complex I genes and brain gliomas of grade II, III and IV. The impact of missense changes on the biochemical properties, structure and functioning of the encoded protein, as well as their potential harmfulness, were assessed in silico along with their belonging to a given mitochondrial subgroup. The A3505G, C3992T, A4024G, T4216C, G5046A, G7444A, T11253C, G12406A and G13604C polymorphisms were assessed as deleterious changes in silico, indicating their association with carcinogenesis.

4.
Int J Mol Sci ; 23(20)2022 Oct 12.
Artículo en Inglés | MEDLINE | ID: mdl-36292984

RESUMEN

Mitochondrial DNA changes can contribute to both an increased and decreased likelihood of cancer. This process is complex and not fully understood. Polymorphisms and mutations, especially those of the missense type, can affect mitochondrial functions, particularly if the conservative domain of the protein is concerned. This study aimed to identify the possible relationships between brain gliomas and the occurrence of specific mitochondrial DNA polymorphisms and mutations in respiratory complexes III, IV and V. The investigated material included blood and tumour material collected from 30 Caucasian patients diagnosed with WHO grade II, III or IV glioma. The mitochondrial genetic variants were investigated across the mitochondrial genome using next-generation sequencing (MiSeq/FGx system-Illumina). The study investigated, in silico, the effects of missense mutations on the biochemical properties, structure and functioning of the encoded protein, as well as their potential harmfulness. The A14793G (MTCYB), A15758G, (MT-CYB), A15218G (MT-CYB), G7444A (MT-CO1) polymorphisms, and the T15663C (MT-CYB) and G8959A (ATP6) mutations were assessed in silico as harmful alterations that could be involved in oncogenesis. The G8959A (E145K) ATP6 missense mutation has not been described in the literature so far. In light of these results, further research into the role of mtDNA changes in brain tumours should be conducted.


Asunto(s)
Neoplasias Encefálicas , Genoma Mitocondrial , Humanos , ADN Mitocondrial/genética , Mitocondrias/genética , Genes Mitocondriales , Mutación , Neoplasias Encefálicas/genética
5.
Arch Med Sadowej Kryminol ; 72(3): 109-119, 2022.
Artículo en Inglés, Polaco | MEDLINE | ID: mdl-37395376

RESUMEN

Background: Environmental and genetic (in approximately 50%) factors are responsible for the development of alcohol abuse and dependence. The main genes responsible for the risk of harmful alcohol consumption are the genes encoding the enzymes of ethanol metabolism in the human body. Ethyl alcohol is oxidized to acetaldehyde by alcohol dehydrogenases found in the liver (ADH1B, ADH1C and ADH4) and stomach (ADH7). Gastric metabolism of ethanol is able to reduce the amount of alcohol reaching the bloodstream by up to 10% of the dose taken. ADH7 gene variations could be associated as the risk of developing alcohol abuse and dependence. Aim: Analysis of tag SNPs in the ADH7 gene and determination of the relationship between those variants and the risk of developing alcohol abuse and dependence in the Polish population. Material and methods: Blood samples from 159 autopsies from alcohol abusers and/or addicts and 201 buccal swabs taken from controls. Genotyping was performed using the Real Time PCR method with TaqMan probes on 3 tag SNPs: rs284786, rs1154470 (within the ADH7 gene) and rs7690269 (from the intergenic region). The obtained genotypes were randomly verified by Sanger sequencing. Results and conclusions: The results of the performed statistical analyses of the obtained genotypes did not confirm the relationship between the above-mentioned variants and a risk of developing problems with alcohol consumption, based on samples from the Polish population.

7.
Arch Med Sadowej Kryminol ; 66(3): 172-181, 2016.
Artículo en Inglés | MEDLINE | ID: mdl-28453170

RESUMEN

Alcohol dependence is both a medical and socioeconomic problem. The disease is multifactorial, i.e. its development is attributable to gene-gene and gene-environment interactions. Multi-centre studies investigating the genetic background of alcoholism stress the role of genes encoding enzymes of the ethanol decomposition pathway in the human body, particularly alcohol dehydrogenase (ADH), in the development of alcohol dependence. Among five classes of alcohol dehydrogenases, class I and IV isoenzymes have been found to be associated with alcohol dependence. Class IV is of particular interest due to its occurrence in the upper gastrointestinal tract, mainly in the stomach. No activity of the enzyme has been demonstrated in the liver. Single nucleotide polymorphism (SNP) of the gene encoding ADH class IV (ADH7) affects its ethanol-oxidizing activity in the gastric lumen, thereby influencing the first-pass metabolism (FPM) of the substance. The findings published by various research centres have demonstrated that specific SNP changes in the ADH7 gene are of different significance for the risk of alcohol dependence according to the population studied.


Asunto(s)
Alcohol Deshidrogenasa/genética , Consumo de Bebidas Alcohólicas/genética , Aldehído Deshidrogenasa/genética , Humanos , Polimorfismo de Nucleótido Simple , Factores de Riesgo
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