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1.
Ann Hum Biol ; 50(1): 431-435, 2023 Feb.
Article in English | MEDLINE | ID: mdl-37812207

ABSTRACT

Background: During the last 20 years, X-chromosomal STR markers have become widely used in forensic genetics and paternity testing. Nevertheless, to exploit their full potential in any given population, a reliable reference dataset needs to be established. Since no relevant studies concerning these markers have been performed on the Slovak population so far, we decided to analyse several commonly used markers in this population.Aim: To create an informative set of Slovak population data concerning X-STR markers.Subjects and methods: We genotyped 378 individuals and analysed 12 loci (DXS10148, DX10135, DXS8378, DXS7132, DXS10079, DXS10074, DXS10103, HPRTB, DXS10101, DXS10146, DXS10134 and DXS742) localised in four distinct linkage groups.Results: Our analysis showed that the most informative marker is DXS10135 (PIC = 0,927) and the most informative linkage group (LG) is LG1 with 149 different haplotypes. This analysis also confirmed linkage disequilibrium for two pairs of markers (DX10101-DX10103 and DX10101-HPRTB) within LG3 in female samples. No statistically significant departure from HWE was observed for any locus. Moreover, the interpopulation comparison of 8 European populations based on haplotype frequencies showed no statistically significant FST values in any LG, except for LG2 in comparison with the German population.Conclusion: We created a haplotype database for forensic analyses and kinship testing in Slovakia, as well as the CE dataset which can be used to further increase the decision power in similar analyses in the future.


Subject(s)
Genetics, Population , Microsatellite Repeats , Humans , Female , Gene Frequency , Slovakia , Microsatellite Repeats/genetics , Chromosomes, Human, X/genetics , Haplotypes , Genetic Markers
3.
Ann Hum Biol ; 49(5-6): 248-253, 2022 Sep.
Article in English | MEDLINE | ID: mdl-35867540

ABSTRACT

BACKGROUND: Short tandem repeats (STRs) are genetic markers frequently used for human identification and paternity testing. They are highly mutable, which may occasionally lead to inconsistencies between the genotypes of parents and their children. As the mutation rates of individual STR markers can vary among populations, population-specific data are of high importance. AIM: To investigate the mutation rates of 16 STR markers in the Slovak population. SUBJECTS AND METHODS: In this study, we analysed the germline mutation rates of 16 STR markers (TH01, D3S1358, vWA, D21S11, D16S539, D1S1656, D19S433, SE33, D10S1248, D22S1045, D12S391, D8S1179, D2S1338, D2S441, D18S51 and FGA) in the Slovak population. At these loci, we analysed 42 096 allelic transfers and identified 61 mutation events. RESULTS: The loci with the highest overall mutation rates were SE33 and FGA, while no mutations were identified in TH01, D19S433 and D22S1045. The average paternal mutation rate was higher than the maternal mutation rate. All but one mutation consisted of gains or losses of a single repeat unit and the overall mutation rate was estimated to be 1.45 x10-3 per meiosis. CONCLUSION: This study provides data which can be used to further strengthen the correct paternity index calculations and reliability of paternity testing in Slovakia.


Subject(s)
Genetics, Population , Microsatellite Repeats , Paternity , Humans , Gene Frequency , Mutation , Reproducibility of Results , Slovakia
4.
BMC Cardiovasc Disord ; 22(1): 180, 2022 04 19.
Article in English | MEDLINE | ID: mdl-35439923

ABSTRACT

BACKGROUND: Quantitative RT-PCR is a valuable tool for assessing the gene expression in different human tissues, particularly due to its exceptional sensitivity, accuracy and reliability. However, the choice of adequate control for normalization is a crucial step, greatly affecting the results of all subsequent analyses. So far, only a few studies were focused on the selection of optimal reference genes in left ventricles of failing human hearts, leading to several disparities in experimental results focused on differential gene expression in this area. Therefore, the main objective of this study was to identify a set of suitable reference genes in normal and failing left ventricle tissues, which could increase the reliability of RT-qPCR-based studies in the future. METHODS: We analyzed the expression of 15 commonly used housekeeping genes (ACTB, B2M, GAPDH, GUSB, HMBS, HPRT1, IPO8, PGK1, POLR2A, PPIA, RPLP0, TBP, TFRC, UBC and YWHAZ) in left ventricles of normal and failed hearts with two-step approach. In the first step, we excluded genes which are variantly expressed using ANOVA-based statistical method. Afterwards, the remaining genes were analyzed using geNorm, NormFinder and BestKeeper algorithms, together with delta Cq method. Finally, the geometric mean of gene rankings across all methods was calculated. RESULTS: Our analysis identified IPO8 and POLR2A as the most stably expressed genes, whereas ACTB and B2M were found to be expressed variantly, suggesting a potential role of these genes in the pathophysiological processes in failing human hearts. DISCUSSION/CONCLUSION: Using our two-step approach, we identified and validated two reference genes expressed invariantly in left ventricles of both healthy and failing human hearts, as well as provided a guideline for the selection of reference genes in studies comparing gene expression in these types of tissues.


Subject(s)
Gene Expression Profiling , Heart Ventricles , Gene Expression Profiling/methods , Genes, Essential , Humans , Real-Time Polymerase Chain Reaction/methods , Reproducibility of Results
5.
Leg Med (Tokyo) ; 53: 101953, 2021 Nov.
Article in English | MEDLINE | ID: mdl-34411796

ABSTRACT

Genetic analyses of STR markers provide data for several important applications, including criminal caseworks, kinship analyses and population studies. In this study, we describe the parameters of nine STR markers (D2S1360, D3S1744, D4S2366, D5S2500, D6S474, D7S1517, D8S1132, D10S2325, D21S2055) in Slovak population and compare them with several European and worldwide populations. Since these markers are not commonly used in forensic practice, our data might provide subsidiary discriminatory power in the most demanding criminal examinations, where additional markers need to be analyzed. Moreover, we performed the MDS analysis and constructed a phylogenetic tree representing genetic relationships between several European populations based on Nei's DA distance. We show that the analysis of just 9 markers is sufficient for reliable clustering of different European populations and their separation from the populations from other geographical areas. Taken together, our data provide a reliable dataset characterizing the Slovak population, which might serve as a basis for criminal, population and kinship studies.


Subject(s)
DNA Fingerprinting , Genetics, Population , China , Gene Frequency , Humans , Microsatellite Repeats/genetics , Phylogeny , Slovakia
6.
Genome Biol Evol ; 13(2)2021 02 03.
Article in English | MEDLINE | ID: mdl-33537752

ABSTRACT

In virtually every eukaryotic species, the ends of nuclear chromosomes are protected by telomeres, nucleoprotein structures counteracting the end-replication problem and suppressing recombination and undue DNA repair. Although in most cases, the primary structure of telomeric DNA is conserved, there are several exceptions to this rule. One is represented by the telomeric repeats of ascomycetous yeasts, which encompass a great variety of sequences, whose evolutionary origin has been puzzling for several decades. At present, the key questions concerning the driving force behind their rapid evolution and the means of co-evolution of telomeric repeats and telomere-binding proteins remain largely unanswered. Previously published studies addressed mostly the general concepts of the evolutionary origin of telomeres, key properties of telomeric proteins as well as the molecular mechanisms of telomere maintenance; however, the evolutionary process itself has not been analyzed thoroughly. Here, we aimed to inspect the evolution of telomeres in ascomycetous yeasts from the subphyla Saccharomycotina and Taphrinomycotina, with special focus on the evolutionary origin of species-specific telomeric repeats. We analyzed the sequences of telomeric repeats from 204 yeast species classified into 20 families and as a result, we propose a step-by-step model, which integrates the diversity of telomeric repeats, telomerase RNAs, telomere-binding protein complexes and explains a propensity of certain species to generate the repeat heterogeneity within a single telomeric array.


Subject(s)
Ascomycota/genetics , Evolution, Molecular , Telomere/chemistry , Ascomycota/classification , DNA, Fungal/chemistry , Genetic Variation , RNA, Untranslated/physiology , Repetitive Sequences, Nucleic Acid
7.
Front Microbiol ; 10: 2438, 2019.
Article in English | MEDLINE | ID: mdl-31708904

ABSTRACT

Experimental data indicate that during persistent infection, lymphocytic choriomeningitis virus (LCMV) may both directly or indirectly modulate regulatory cellular processes and alter cellular functions that are not critical for survival, but are essential for cell homeostasis. In order to shed more light on these processes, two-dimensional differential in-gel electrophoresis (2D-DIGE) and MALDI-TOF tandem mass spectrometry were used to determine the proteome response of the HeLa cell line to persistent LCMV infection. Quantitative analysis revealed 24 differentially abundant proteins. Functional analysis showed that LCMV-responsive proteins were primarily involved in metabolism, stress, and the defense response. Among identified proteins, we discovered significant changes for peroxiredoxins, a family of antioxidant enzymes. Decreased amount of these antioxidant proteins correlated with elevation of reactive oxygen species (ROS) in infected cells. Increased levels of ROS were accompanied by changes in the pattern of telomere restriction fragments (TRFs) in infected cells and mediated activation of hypoxia-inducible transcription factor-1 (HIF-1) and phosphatidylinositol 3-kinase (PI3K)/Akt signaling pathways. Moreover, treatment with antioxidants resulted in reduced levels of viral nucleoprotein, indicating a connection between ROS-dependent signaling and viral replication.

8.
Sci Rep ; 9(1): 13365, 2019 09 16.
Article in English | MEDLINE | ID: mdl-31527614

ABSTRACT

Telomeric repeats in fungi of the subphylum Saccharomycotina exhibit great inter- and intra-species variability in length and sequence. Such variations challenged telomeric DNA-binding proteins that co-evolved to maintain their functions at telomeres. Here, we compare the extent of co-variations in telomeric repeats, encoded in the telomerase RNAs (TERs), and the repeat-binding proteins from 13 species belonging to the Yarrowia clade. We identified putative TER loci, analyzed their sequence and secondary structure conservation, and predicted functional elements. Moreover, in vivo complementation assays with mutant TERs showed the functional importance of four novel TER substructures. The TER-derived telomeric repeat unit of all species, except for one, is 10 bp long and can be represented as 5'-TTNNNNAGGG-3', with repeat sequence variations occuring primarily outside the vertebrate telomeric motif 5'-TTAGGG-3'. All species possess a homologue of the Yarrowia lipolytica Tay1 protein, YlTay1p. In vitro, YlTay1p displays comparable DNA-binding affinity to all repeat variants, suggesting a conserved role among these species. Taken together, these results add significant insights into the co-evolution of TERs, telomeric repeats and telomere-binding proteins in yeasts.


Subject(s)
Telomerase/genetics , Telomere-Binding Proteins/genetics , Yarrowia/genetics , Biological Evolution , DNA Repeat Expansion/genetics , Evolution, Molecular , Fungal Proteins/metabolism , RNA/genetics , Telomerase/metabolism , Telomere/metabolism
9.
Biochem Mol Biol Educ ; 46(1): 22-30, 2018 01.
Article in English | MEDLINE | ID: mdl-28858410

ABSTRACT

As future scientists, university students need to learn how to avoid making errors in their own manuscripts, as well as how to identify flaws in papers published by their peers. Here we describe a novel approach on how to promote students' ability to critically evaluate scientific articles. The exercise is based on instructing teams of students to write intentionally flawed manuscripts describing the results of simple experiments. The teams are supervised by instructors advising the students during manuscript writing, choosing the 'appropriate' errors, monitoring the identification of errors made by the other team and evaluating the strength of their arguments in support of the identified errors. We have compared the effectiveness of the method with a journal club-type seminar. Based on the results of our assessment we propose that the described seminar may effectively complement the existing approaches to teach critical scientific thinking. © 2017 by The International Union of Biochemistry and Molecular Biology, 46(1):22-30, 2018.


Subject(s)
Research Report , Science/education , Students/psychology , Teaching , Humans , Research Report/standards , Universities
11.
Cell Cycle ; 16(17): 1568-1577, 2017.
Article in English | MEDLINE | ID: mdl-28749196

ABSTRACT

Telomeric sequences constitute only a small fraction of the whole genome yet they are crucial for ensuring genomic stability. This function is in large part mediated by protein complexes recruited to telomeric sequences by specific telomere-binding proteins (TBPs). Although the principal tasks of nuclear telomeres are the same in all eukaryotes, TBPs in various taxa exhibit a surprising diversity indicating their distinct evolutionary origin. This diversity is especially pronounced in ascomycetous yeasts where they must have co-evolved with rapidly diversifying sequences of telomeric repeats. In this article we (i) provide a historical overview of the discoveries leading to the current list of TBPs binding to double-stranded (ds) regions of telomeres, (ii) describe examples of dsTBPs highlighting their diversity in even closely related species, and (iii) speculate about possible evolutionary trajectories leading to a long list of various dsTBPs fulfilling the same general role(s) in their own unique ways.


Subject(s)
DNA/metabolism , Telomere-Binding Proteins/metabolism , Amino Acid Sequence , Animals , Humans , Phylogeny , Protein Binding , Protein Domains , Species Specificity , Telomere-Binding Proteins/chemistry
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