Silva Kasela
University of Tartu
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Publication
Featured researches published by Silva Kasela.
BMC Genomics | 2014
Marc Jan Bonder; Silva Kasela; Mart Kals; Riin Tamm; Kaie Lokk; Isabel Barragan; Wim A. Buurman; Patrick Deelen; Jan-Willem M. Greve; Maxim Ivanov; Sander S. Rensen; Jana V. van Vliet-Ostaptchouk; Marcel G. M. Wolfs; Jingyuan Fu; Marten H. Hofker; Cisca Wijmenga; Alexandra Zhernakova; Magnus Ingelman-Sundberg; Lude Franke; Lili Milani
BackgroundThe liver plays a central role in the maintenance of homeostasis and health in general. However, there is substantial inter-individual variation in hepatic gene expression, and although numerous genetic factors have been identified, less is known about the epigenetic factors.ResultsBy analyzing the methylomes and transcriptomes of 14 fetal and 181 adult livers, we identified 657 differentially methylated genes with adult-specific expression, these genes were enriched for transcription factor binding sites of HNF1A and HNF4A. We also identified 1,000 genes specific to fetal liver, which were enriched for GATA1, STAT5A, STAT5B and YY1 binding sites. We saw strong liver-specific effects of single nucleotide polymorphisms on both methylation levels (28,447 unique CpG sites (meQTL)) and gene expression levels (526 unique genes (eQTL)), at a false discovery rate (FDR) < 0.05. Of the 526 unique eQTL associated genes, 293 correlated significantly not only with genetic variation but also with methylation levels. The tissue-specificities of these associations were analyzed in muscle, subcutaneous adipose tissue and visceral adipose tissue. We observed that meQTL were more stable between tissues than eQTL and a very strong tissue-specificity for the identified associations between CpG methylation and gene expression.ConclusionsOur analyses generated a comprehensive resource of factors involved in the regulation of hepatic gene expression, and allowed us to estimate the proportion of variation in gene expression that could be attributed to genetic and epigenetic variation, both crucial to understanding differences in drug response and the etiology of liver diseases.
Scientific Reports | 2015
Liina Tserel; Maia Limbach; Konstantin Tretyakov; Silva Kasela; Kai Kisand; Mario Saare; Jaak Vilo; Andres Metspalu; Lili Milani; Pärt Peterson
Human ageing affects the immune system resulting in an overall decline in immunocompetence. Although all immune cells are affected during aging, the functional capacity of T cells is most influenced and is linked to decreased responsiveness to infections and impaired differentiation. We studied age-related changes in DNA methylation and gene expression in CD4+ and CD8+ T cells from younger and older individuals. We observed marked difference between T cell subsets, with increased number of methylation changes and higher methylome variation in CD8+ T cells with age. The majority of age-related hypermethylated sites were located at CpG islands of silent genes and enriched for repressive histone marks. Specifically, in CD8+ T cell subset we identified strong inverse correlation between methylation and expression levels in genes associated with T cell mediated immune response (LGALS1, IFNG, CCL5, GZMH, CCR7, CD27 and CD248) and differentiation (SATB1, TCF7, BCL11B and RUNX3). Our results thus suggest the link between age-related epigenetic changes and impaired T cell function.
Biochimie | 2012
Marina Kacevska; Maxim Ivanov; Annika Wyss; Silva Kasela; Lili Milani; Anders Rane; Magnus Ingelman-Sundberg
The CYP3A4 gene, encoding the major drug metabolizing enzyme in humans, exhibits a high interindividual variation in hepatic expression that can lead to interindividual differences in drug metabolism and associated adverse drug effects. Much of the interindividual variability in CYP3A4 remains unexplained. In the present study we investigated the role of DNA methylation in influencing the interindividual CYP3A4 expression. Individual CpG methylation within the ∼12 kb CYP3A4 regulatory region was investigated in 72 adult as well as in 7 fetal human livers using bisulfite sequencing. We identified highly variable CpG methylation sites in adult livers, which correspond to important CYP3A4 transcription factor binding sites including the proximal promoter, XREM and CLEM4 as well as in separate C/EBP and HNF4α binding regions. CpG hypermethylation within these regulatory regions was observed in fetal livers when compared to adult livers. This data suggests that dynamic DNA methylation elements are likely associated with key regulatory CYP3A4 promoter regions and may potentially contribute to the commonly observed interindividual expression of CYP3A4 as well as the hepatic developmental shift in its expression. The findings provide novel insight to CYP3A4 regulation with possible implications for understanding interindividual differences in drug response.
Genome Biology | 2017
Elin Org; Yuna Blum; Silva Kasela; Margarete Mehrabian; Johanna Kuusisto; Antti J. Kangas; Pasi Soininen; Zeneng Wang; Mika Ala-Korpela; Stanley L. Hazen; Markku Laakso; Aldons J. Lusis
BackgroundThe gut microbiome is a complex and metabolically active community that directly influences host phenotypes. In this study, we profile gut microbiota using 16S rRNA gene sequencing in 531 well-phenotyped Finnish men from the Metabolic Syndrome In Men (METSIM) study.ResultsWe investigate gut microbiota relationships with a variety of factors that have an impact on the development of metabolic and cardiovascular traits. We identify novel associations between gut microbiota and fasting serum levels of a number of metabolites, including fatty acids, amino acids, lipids, and glucose. In particular, we detect associations with fasting plasma trimethylamine N-oxide (TMAO) levels, a gut microbiota-dependent metabolite associated with coronary artery disease and stroke. We further investigate the gut microbiota composition and microbiota–metabolite relationships in subjects with different body mass index and individuals with normal or altered oral glucose tolerance. Finally, we perform microbiota co-occurrence network analysis, which shows that certain metabolites strongly correlate with microbial community structure and that some of these correlations are specific for the pre-diabetic state.ConclusionsOur study identifies novel relationships between the composition of the gut microbiota and circulating metabolites and provides a resource for future studies to understand host–gut microbiota relationships.
PLOS Genetics | 2015
Harm-Jan Westra; Danny Arends; Tonu Esko; Marjolein J. Peters; Katharina Schramm; Johannes Kettunen; Hanieh Yaghootkar; Benjamin P. Fairfax; Anand Kumar Andiappan; Yang Li; Jingyuan Fu; Juha Karjalainen; Mathieu Platteel; Marijn C. Visschedijk; Rinse K. Weersma; Silva Kasela; Lili Milani; Liina Tserel; Pärt Peterson; Eva Reinmaa; Albert Hofman; André G. Uitterlinden; Fernando Rivadeneira; Georg Homuth; Astrid Petersmann; Roberto Lorbeer; Holger Prokisch; Thomas Meitinger; Christian Herder; Michael Roden
The functional consequences of trait associated SNPs are often investigated using expression quantitative trait locus (eQTL) mapping. While trait-associated variants may operate in a cell-type specific manner, eQTL datasets for such cell-types may not always be available. We performed a genome-environment interaction (GxE) meta-analysis on data from 5,683 samples to infer the cell type specificity of whole blood cis-eQTLs. We demonstrate that this method is able to predict neutrophil and lymphocyte specific cis-eQTLs and replicate these predictions in independent cell-type specific datasets. Finally, we show that SNPs associated with Crohn’s disease preferentially affect gene expression within neutrophils, including the archetypal NOD2 locus.
PLOS Genetics | 2017
Silva Kasela; Kai Kisand; Liina Tserel; Epp Kaleviste; Anu Remm; Krista Fischer; Tonu Esko; Harm-Jan Westra; Benjamin P. Fairfax; Seiko Makino; Julian C. Knight; Lude Franke; Andres Metspalu; Pärt Peterson; Lili Milani
Inappropriate activation or inadequate regulation of CD4+ and CD8+ T cells may contribute to the initiation and progression of multiple autoimmune and inflammatory diseases. Studies on disease-associated genetic polymorphisms have highlighted the importance of biological context for many regulatory variants, which is particularly relevant in understanding the genetic regulation of the immune system and its cellular phenotypes. Here we show cell type-specific regulation of transcript levels of genes associated with several autoimmune diseases in CD4+ and CD8+ T cells including a trans-acting regulatory locus at chr12q13.2 containing the rs1131017 SNP in the RPS26 gene. Most remarkably, we identify a common missense variant in IL27, associated with type 1 diabetes that results in decreased functional activity of the protein and reduced expression levels of downstream IRF1 and STAT1 in CD4+ T cells only. Altogether, our results indicate that eQTL mapping in purified T cells provides novel functional insights into polymorphisms and pathways associated with autoimmune diseases.
Molecular Psychiatry | 2017
R. Karlsson Linner; Riccardo E. Marioni; Cornelius A. Rietveld; Andrew J Simpkin; Neil M Davies; Kyoko Watanabe; Nicola J. Armstrong; Kirsi Auro; Clemens Baumbach; Marc Jan Bonder; Jadwiga Buchwald; Giovanni Fiorito; Khadeeja Ismail; Stella Iurato; Anni Joensuu; Pauliina Karell; Silva Kasela; Jari Lahti; Allan F. McRae; P R Mandaviya; Ilkka Seppälä; Yunfei Wang; Laura Baglietto; Elisabeth B. Binder; Sarah E. Harris; Allison Hodge; Steve Horvath; Mikko Hurme; Magnus Johannesson; Antti Latvala
The epigenome is associated with biological factors, such as disease status, and environmental factors, such as smoking, alcohol consumption and body mass index. Although there is a widespread perception that environmental influences on the epigenome are pervasive and profound, there has been little evidence to date in humans with respect to environmental factors that are biologically distal. Here we provide evidence on the associations between epigenetic modifications—in our case, CpG methylation—and educational attainment (EA), a biologically distal environmental factor that is arguably among the most important life-shaping experiences for individuals. Specifically, we report the results of an epigenome-wide association study meta-analysis of EA based on data from 27 cohort studies with a total of 10 767 individuals. We find nine CpG probes significantly associated with EA. However, robustness analyses show that all nine probes have previously been found to be associated with smoking. Only two associations remain when we perform a sensitivity analysis in the subset of never-smokers, and these two probes are known to be strongly associated with maternal smoking during pregnancy, and thus their association with EA could be due to correlation between EA and maternal smoking. Moreover, the effect sizes of the associations with EA are far smaller than the known associations with the biologically proximal environmental factors alcohol consumption, body mass index, smoking and maternal smoking during pregnancy. Follow-up analyses that combine the effects of many probes also point to small methylation associations with EA that are highly correlated with the combined effects of smoking. If our findings regarding EA can be generalized to other biologically distal environmental factors, then they cast doubt on the hypothesis that such factors have large effects on the epigenome.
PLOS ONE | 2015
Urmo Võsa; Tonu Esko; Silva Kasela; Tarmo Annilo
Allele-specific gene expression associated with genetic variation in regulatory regions can play an important role in the development of complex traits. We hypothesized that polymorphisms in microRNA (miRNA) response elements (MRE-SNPs) that either disrupt a miRNA binding site or create a new miRNA binding site can affect the allele-specific expression of target genes. By integrating public expression quantitative trait locus (eQTL) data, miRNA binding site predictions, small RNA sequencing, and Argonaute crosslinking immunoprecipitation (AGO-CLIP) datasets, we identified genetic variants that can affect gene expression by modulating miRNA binding efficiency. We also identified MRE-SNPs located in regions associated with complex traits, indicating possible causative mechanisms associated with these loci. The results of this study expand the current understanding of gene expression regulation and help to interpret the mechanisms underlying eQTL effects.
web intelligence | 2016
Fredrik Milani; Marlon Dumas; Raimundas Matulevičius; Naved Ahmed; Silva Kasela
It is generally agreed that large process models should be decomposed into sub-processes in order to enhance understandability and maintainability. Accordingly, a number of process decomposition criteria and heuristics have been proposed in the literature. This paper presents a review of the field revealing distinct classes of criteria and heuristics. The study raises the question of how different decomposition heuristics affect process model understandability and maintainability. To address this question, an experiment is conducted where two different heuristics, one based on breakpoints and the other on data objects, were used to decompose a flat process model. The results of the experiment show that, although there are minor differences, the heuristics cause very similar results in regard to understandability and maintainability as measured by various process model metrics.
Biochimica et Biophysica Acta | 2018
Annika Wahl; Silva Kasela; Elena Carnero Monotoro; Maarten van Iterson; Jerko Štambuk; Sapna Sharma; Erik B. van den Akker; Lucija Klarić; Elisa Benedetti; Genadij Razdorov; Irena Trbojević-Akmačić; Frano Vučković; Ivo Ugrina; Marian Beekman; Joris Deelen; Diana van Heemst; Bastiaan T. Heijmans; Manfred Wuhrer; Rosina Plomp; Toma Keser; Mirna Šimurina; Tamara Pavić; Ivan Gudelj; Jasminka Krištić; Harald Grallert; Sonja Kunze; Annette Peters; Jordana T. Bell; Tim D. Spector; Lili Milani
BACKGROUND Glycosylation is one of the most common post-translation modifications with large influences on protein structure and function. The effector function of immunoglobulin G (IgG) alters between pro- and anti-inflammatory, based on its glycosylation. IgG glycan synthesis is highly complex and dynamic. METHODS With the use of two different analytical methods for assessing IgG glycosylation, we aim to elucidate the link between DNA methylation and glycosylation of IgG by means of epigenome-wide association studies. In total, 3000 individuals from 4 cohorts were analyzed. RESULTS The overlap of the results from the two glycan measurement panels yielded DNA methylation of 7 CpG-sites on 5 genomic locations to be associated with IgG glycosylation: cg25189904 (chr.1, GNG12); cg05951221, cg21566642 and cg01940273 (chr.2, ALPPL2); cg05575921 (chr.5, AHRR); cg06126421 (6p21.33); and cg03636183 (chr.19, F2RL3). Mediation analyses with respect to smoking revealed that the effect of smoking on IgG glycosylation may be at least partially mediated via DNA methylation levels at these 7 CpG-sites. CONCLUSION Our results suggest the presence of an indirect link between DNA methylation and IgG glycosylation that may in part capture environmental exposures. GENERAL SIGNIFICANCE An epigenome-wide analysis conducted in four population-based cohorts revealed an association between DNA methylation and IgG glycosylation patterns. Presumably, DNA methylation mediates the effect of smoking on IgG glycosylation.