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Search: WFRF:(Kutter Claudia)

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1.
  • Archer, Amena, et al. (author)
  • Expression Profiles of Estrogen-Regulated MicroRNAs in Cancer Cells.
  • 2022
  • In: Methods in Molecular Biology. - New York, NY : Springer Nature. - 1064-3745 .- 1940-6029. ; 2418, s. 313-343
  • Journal article (peer-reviewed)abstract
    • MicroRNAs play critical roles through their impact on posttranscriptional gene regulation. In cancer, they can act as oncogenes or tumor suppressors and can also function as biomarkers. Here, we describe a method for robust characterization of estrogen-regulated microRNA profiles. The activity of estrogen is mediated by two nuclear receptors, estrogen receptor alpha and estrogen receptor beta, and a transmembrane G-protein coupled estrogen receptor 1. This chapter details how to prepare cells for optimal estrogen response, directions for estrogen treatment, RNA extraction, different microRNA profiling approaches, and subsequent confirmations.
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3.
  • Axberg Pålsson, Sandra, 1991-, et al. (author)
  • Inhibition of Respiratory Syncytial Virus Infection by Small Non-Coding RNA Fragments
  • 2022
  • In: International Journal of Molecular Sciences. - : MDPI AG. - 1661-6596 .- 1422-0067. ; 23:11
  • Journal article (peer-reviewed)abstract
    • Respiratory syncytial virus (RSV) causes acute lower respiratory tract infection in infants, immunocompromised individuals and the elderly. As the only current specific treatment options for RSV are monoclonal antibodies, there is a need for efficacious antiviral treatments against RSV to be developed. We have previously shown that a group of synthetic non-coding single-stranded DNA oligonucleotides with lengths of 25-40 nucleotides can inhibit RSV infection in vitro and in vivo. Based on this, herein, we investigate whether naturally occurring single-stranded small non-coding RNA (sncRNA) fragments present in the airways have antiviral effects against RSV infection. From publicly available sequencing data, we selected sncRNA fragments such as YRNAs, tRNAs and rRNAs present in human bronchoalveolar lavage fluid (BALF) from healthy individuals. We utilized a GFP-expressing RSV to show that pre-treatment with the selected sncRNA fragments inhibited RSV infection in A549 cells in vitro. Furthermore, by using a flow cytometry-based binding assay, we demonstrate that these naturally occurring sncRNAs fragments inhibit viral infection most likely by binding to the RSV entry receptor nucleolin and thereby preventing the virus from binding to host cells, either directly or via steric hindrance. This finding highlights a new function of sncRNAs and displays the possibility of using naturally occurring sncRNAs as treatments against RSV.
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4.
  • Birgersson, Madeleine, et al. (author)
  • Intestinal estrogen receptor beta modulates the tumor immune microenvironment in a mouse model of colitis-associated cancer
  • Other publication (other academic/artistic)abstract
    • Chronic inflammation promotes the development of colorectal cancer (CRC), as evidenced by patients with inflammatory bowel disease (IBD), and sex disparities are evident in CRC. The tumor microenvironment (TME) is composed of stromal cells and infiltrating immune cells that directly affect processes including antitumor immunity. We have previously shown that intestinal estrogen receptor beta (ERβ) protects against colitis and colitis-induced cancer (CAC) by modulating inflammatory signaling and that males are more sensitive to the induction of colitis and cancer. However, sex differences between tumors and the impact of ERβ the tumor immune microenvironment have not been investigated. In this study, we have analyzed colon samples from AOM/DSS-treated wild-type and ERβKOVil mice (that lack intestinal ERβ) and profiled the differences in the transcriptome and immune response to CAC on the basis of sex and ERβ expression. RNA-sequencing revealed differences in gene expression and enriched biological processes depending on sex and genotype, and the immune response to cancer appears altered between tumors from female WT and ERβKOVil mice. Immunostaining subsequently showed that tumors from ERβKOVil mice display significantly increased CD68+ macrophage infiltration, decreased CD3+ T cell infiltration, and, strikingly, impaired NK cell infiltration. Here, for the first time, we show that intestinal ERβ modulates the tumor immune microenvironment during CAC and that lack of intestinal ERβ appears to promote the formation of an immunosuppressive TME. Our findings indicate that activation of ERβ could be used to treat CRC, possibly together with immunotherapies, and provide a foundation for future studies investigating ERβ and immunity. 
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5.
  • Birgersson, Madeleine (author)
  • Role and mechanism of estrogen receptor beta in the ovary and colon
  • 2023
  • Doctoral thesis (other academic/artistic)abstract
    • Estrogen regulates a variety of important physiological functions in both males and females, where the regulation of female reproduction and the development of sexual organs are typical examples. The effects of estrogen are predominantly exerted via signaling through the two nuclear receptors estrogen receptor α (ERα) and β (ERβ), or the membrane G protein-coupled estrogen receptor 1 (GPER1). While estrogen signaling is important for human health, dysregulation of signaling can have adverse effects and impact the development and progression of a wide range of diseases including reproductive disorders and cancer.ERβ has been shown to be highly important for ovarian function by regulating folliculogenesis and ovulation but has also been implied to protect against the development of colorectal cancer (CRC) by mediating the effects of estrogen. Despite the known role of ERβ, there is a lack of mechanistic understanding regarding how ERβ acts under both normal conditions and during disease. The overall aim of this thesis was to characterize the function and molecular mechanism of endogenous ERβ and to decipher its role in the normal ovary as well as its impact on colitis and CRC development. To further understand the role of estrogen signaling in the colon, we also aimed to identify sex differences during CRC development. In paper I we characterized the full cistrome of endogenous ovarian ERβ in the mouse and explored its transcriptional impact. We confirmed a direct role for ERβ in the regulation of essential ovarian functions and identified a novel crosstalk with the nuclear receptor LRH-1.  In paper II we induced colitis-associated CRC (CAC) in intestinal epithelial-specific ERβ knockout mice and identified a protective effect by intestinal ERβ against tumor development in both male and female mice. We further characterized sex-dependent effects and proposed an underlying mechanism involving the regulation of TNFα/NFκB signaling. In paper III we expanded the investigation of sex-dependent changes during chemically-induced colitis in wildtype mice and identified a sex-specific response related to inflammatory response. We further found that male mice have an enhanced response to induced colitis.In paper IV the transcriptome of colitis-induced tumors and their immune cell infiltration was explored in wildtype and intestinal epithelial-specific ERβ knockout mice of both sexes. This showed that sex differences in the transcriptome appear to be dependent on the expression of ERβ. Also, the identified ERβ-dependent changes in the tumor transcriptome of female mice were specifically related to immune response. We corroborated an impact of ERβ on the infiltration of immune cells, especially a reduction of regulatory T cell and NK cell recruitment. In summary, this thesis provides new mechanistic understanding of the transcriptional role of ERβ in the normal ovary and in the colon microenvironment. This includes the discovery of crosstalk with LRH-1 in the ovary and NFκB in the colon. Our characterization provides a foundation to develop targeted therapies for improved fertility and chemoprevention in CRC. This thesis also highlights the importance of including both sexes in colitis and CRC research to advance our knowledge and improve treatment development.
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6.
  • Das Mahapatra, Kunal, et al. (author)
  • A comprehensive analysis of coding and non-coding transcriptomic changes in cutaneous squamous cell carcinoma
  • 2020
  • In: Scientific Reports. - : Springer Science and Business Media LLC. - 2045-2322. ; 10:1
  • Journal article (peer-reviewed)abstract
    • Cutaneous Squamous Cell Carcinoma (cSCC) is the most common and fastest-increasing cancer with metastatic potential. Long non-coding RNAs (lncRNAs) and circular RNAs (circRNAs) are novel regulators of gene expression. To identify mRNAs, lncRNAs and circRNAs, which can be involved in cSCC, RNA-seq was performed on nine cSCCs and seven healthy skin samples. Representative transcripts were validated by NanoString nCounter assays using an extended cohort, which also included samples from pre-cancerous skin lesions (actinic keratosis). 5,352 protein-coding genes, 908 lncRNAs and 55 circular RNAs were identified to be differentially expressed in cSCC. Targets of 519 transcription factors were enriched among differentially expressed genes, 105 of which displayed altered level in cSCCs, including fundamental regulators of skin development (MYC, RELA, ETS1, TP63). Pathways related to cell cycle, apoptosis, inflammation and epidermal differentiation were enriched. In addition to known oncogenic lncRNAs (PVT1, LUCAT1, CASC9), a set of skin-specific lncRNAs were were identified to be dysregulated. A global downregulation of circRNAs was observed in cSCC, and novel skin-enriched circRNAs, circ_IFFO2 and circ_POF1B, were identified and validated. In conclusion, a reference set of coding and non-coding transcripts were identified in cSCC, which may become potential therapeutic targets or biomarkers.
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7.
  • Gallardo-Dodd, Carlos J., et al. (author)
  • Exposure of volunteers to microgravity by dry immersion bed over 21 days results in gene expression changes and adaptation of T cells
  • 2023
  • In: Science Advances. - 2375-2548. ; 9:34
  • Journal article (peer-reviewed)abstract
    • The next steps of deep space exploration are manned missions to Moon and Mars. For safe space missions for crew members, it is important to understand the impact of space flight on the immune system. We studied the effects of 21 days dry immersion (DI) exposure on the transcriptomes of T cells isolated from blood samples of eight healthy volunteers. Samples were collected 7 days before DI, at day 7, 14, and 21 during DI, and 7 days after DI. RNA sequencing of CD3(+) T cells revealed transcriptional alterations across all time points, with most changes occurring 14 days after DI exposure. At day 21, T cells showed evidence of adaptation with a transcriptional profile resembling that of 7 days before DI. At 7 days after DI, T cells again changed their transcriptional profile. These data suggest that T cells adapt by rewiring their transcriptomes in response to simulated weightlessness and that remodeling cues persist when reexposed to normal gravity.
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8.
  • Luu, Thuy T., et al. (author)
  • FOXO1 and FOXO3 Cooperatively Regulate Innate Lymphoid Cell Development
  • 2022
  • In: Frontiers in Immunology. - : Frontiers Media S.A.. - 1664-3224. ; 13
  • Journal article (peer-reviewed)abstract
    • Natural killer (NK) cells play roles in viral clearance and early surveillance against malignant transformation, yet our knowledge of the underlying mechanisms controlling their development and functions remain incomplete. To reveal cell fate-determining pathways in NK cell progenitors (NKP), we utilized an unbiased approach and generated comprehensive gene expression profiles of NK cell progenitors. We found that the NK cell program was gradually established in the CLP to preNKP and preNKP to rNKP transitions. In line with FOXO1 and FOXO3 being co-expressed through the NK developmental trajectory, the loss of both perturbed the establishment of the NK cell program and caused stalling in both NK cell development and maturation. In addition, we found that the combined loss of FOXO1 and FOXO3 caused specific changes to the composition of the non-cytotoxic innate lymphoid cell (ILC) subsets in bone marrow, spleen, and thymus. By combining transcriptome and chromatin profiling, we revealed that FOXO TFs ensure proper NK cell development at various lineage-commitment stages through orchestrating distinct molecular mechanisms. Combined FOXO1 and FOXO3 deficiency in common and innate lymphoid cell progenitors resulted in reduced expression of genes associated with NK cell development including ETS-1 and their downstream target genes. Lastly, we found that FOXO1 and FOXO3 controlled the survival of committed NK cells via gene regulation of IL-15R beta (CD122) on rNKPs and bone marrow NK cells. Overall, we revealed that FOXO1 and FOXO3 function in a coordinated manner to regulate essential developmental genes at multiple stages during murine NK cell and ILC lineage commitment.
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9.
  • Malla, Sandhya, et al. (author)
  • ZFP207 sustains pluripotency by coordinating OCT4 stability, alternative splicing and RNA export
  • 2022
  • In: EMBO Reports. - : John Wiley & Sons. - 1469-221X .- 1469-3178. ; 23:3
  • Journal article (peer-reviewed)abstract
    • The pluripotent state is not solely governed by the action of the core transcription factors OCT4, SOX2, and NANOG, but also by a series of co-transcriptional and post-transcriptional events, including alternative splicing (AS) and the interaction of RNA-binding proteins (RBPs) with defined subpopulations of RNAs. Zinc Finger Protein 207 (ZFP207) is an essential transcription factor for mammalian embryonic development. Here, we employ multiple functional analyses to characterize its role in mouse embryonic stem cells (ESCs). We find that ZFP207 plays a pivotal role in ESC maintenance, and silencing of Zfp207 leads to severe neuroectodermal differentiation defects. In striking contrast to human ESCs, mouse ZFP207 does not transcriptionally regulate neuronal and stem cell-related genes but exerts its effects by controlling AS networks and by acting as an RBP. Our study expands the role of ZFP207 in maintaining ESC identity, and underscores the functional versatility of ZFP207 in regulating neural fate commitment.
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10.
  • Ottenburghs, Jente, et al. (author)
  • Genome Size Reduction and Transposon Activity Impact tRNA Gene Diversity While Ensuring Translational Stability in Birds
  • 2021
  • In: Genome Biology and Evolution. - : Oxford University Press. - 1759-6653. ; 13:4
  • Journal article (peer-reviewed)abstract
    • As a highly diverse vertebrate class, bird species have adapted to various ecological systems. How this phenotypic diversity can be explained genetically is intensively debated and is likely grounded in differences in the genome content. Larger and more complex genomes could allow for greater genetic regulation that results in more phenotypic variety. Surprisingly, avian genomes are much smaller compared to other vertebrates but contain as many protein-coding genes as other vertebrates. This supports the notion that the phenotypic diversity is largely determined by selection on non-coding gene sequences. Transfer RNAs (tRNAs) represent a group of non-coding genes. However, the characteristics of tRNA genes across bird genomes have remained largely unexplored. Here, we exhaustively investigated the evolution and functional consequences of these crucial translational regulators with in bird species and across vertebrates. Our dense sampling of 55 avian genomes representing each bird order revealed an average of 169 tRNA genes with at least 31% being actively used. Unlike other vertebrates, avian tRNA genes are reduced in number and complexity but are still in line with vertebrate wobble pairing strategies and mutation-driven codon usage. Our detailed phylogenetic analyses further uncovered that new tRNA genes can emerge through multiplication by transposable elements. Together, this study provides the first comprehensive avian and cross-vertebrate tRNA gene analyses and demonstrates that tRNA gene evolution is flexible albeit constrained within functional boundaries of general mechanisms in protein translation.
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  • Result 1-10 of 12
Type of publication
journal article (9)
other publication (2)
doctoral thesis (1)
Type of content
peer-reviewed (9)
other academic/artistic (3)
Author/Editor
Kutter, Claudia (11)
Williams, Cecilia, P ... (3)
Archer, Amena (2)
Friedländer, Marc R. (2)
Axberg Pålsson, Sand ... (2)
Sekar, Vaishnovi (2)
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Birgersson, Madelein ... (2)
Achour, Adnane (1)
Aguilo, Francesca, P ... (1)
Bhattarai, Devi Pras ... (1)
Groza, Paula (1)
Roman, Ángel-Carlos (1)
Malla, Sandhya (1)
Spetz, Anna-Lena (1)
Månsson, Robert (1)
Lee, Dung-Fang (1)
Öst, Anita (1)
Pasquali, Lorenzo (1)
Ali, Liaqat (1)
Andersson, John (1)
Sonkoly, Enikö (1)
Angelin, Bo (1)
Kierczak, Marcin, 19 ... (1)
Suh, Alexander (1)
Chambers, Benedict J (1)
Spetz, Anna-Lena, 19 ... (1)
Westerberg, Lisa S. (1)
Nätt, Daniel (1)
Pivarcsi, Andor (1)
Kemény, Lajos (1)
Helguero, Luisa A. (1)
Kharazi, Shabnam (1)
Nemeth, Istvan Balaz ... (1)
Holm, Matilda (1)
Stepanauskaite, Lina (1)
Gallardo-Dodd, Carlo ... (1)
Hases, Linnea (1)
Archer, Amena, Dokto ... (1)
Kutter, Claudia, Doc ... (1)
Villablanca, Eduardo ... (1)
Moore, David, Profes ... (1)
Kadri, Nadir (1)
Gustafsson, Charlott ... (1)
Kristensen, Lasse So ... (1)
Bouderlique, Thibaul ... (1)
Peña-Pérez, Lucia (1)
Krstic, Aleksandra (1)
Kjems, Jørgen (1)
Örtegren Kugelberg, ... (1)
Höglund, Petter (1)
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University
Karolinska Institutet (9)
Royal Institute of Technology (4)
Uppsala University (3)
Stockholm University (3)
Umeå University (1)
Linköping University (1)
Language
English (12)
Research subject (UKÄ/SCB)
Medical and Health Sciences (9)
Natural sciences (5)

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