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Korhonen, T.-M.

Publications and source records attributed to Korhonen, T.-M..

2 recordsLinked to original sources

Systemic circulating microRNA landscape in Lynch syndrome

MicroRNAs (miRs) are non-coding RNA-molecules that regulate gene expression. Global circulating miR (c-miR) expression patterns (c-miRnome) change with carcinogenesis in various sporadic cancers. Therefore, aberrantly expressed c-miRs could have diagnostic, predictive and prognostic potential in molecular profiling of cancers. c-miR functions in carriers of inherited pathogenic mismatch-repair gene variants (path_MMR), also known as Lynch syndrome (LS), have remained understudied. LS cohort provides an ideal population for biomarker mining due to increased lifelong cancer risk and excessive cancer occurrence. Using high-throughput sequencing and bioinformatic approaches, we conducted an exploratory analysis to characterize systemic c-miRnomes of path_MMR carriers. Our discovery cohort included 81 healthy path_MMR carriers and 37 non-LS controls. Our analysis also included cancer cohort comprised of 13 path_MMR carriers with varying cancers and 24 sporadic rectal cancer patients. We showed for the first time that c-miRnome can discern healthy path_MMR carriers from non-LS controls but does not distinguish healthy path_MMR carriers from cancer patients with or without path_MMR. Our c-miR expression analysis combined with in silico tools suggest ongoing alterations of biological pathways shared in LS and sporadic carcinogenesis. We observed that these alterations can produce a c-miR signature which can be used to track oncogenic stress in cancer-free path_MMR carriers. Thus, c-miRs hold potential in monitoring which cancer patients would require more intensive surveillance or clinical management. SignificanceC-miRnome can discern between healthy persons with or without path_MMR but does not distinguish healthy path_MMR carriers from cancer patients with or without path_MMR, indicating an ongoing alteration of biological pathways that can be used to track oncogenic stress at cancer-free state.

cancer biology↗

Extracellular vesicles and high-density lipoproteins: Exercise and estrogen-responsive small RNA carriers

Decreased systemic estrogen levels (i.e., menopause) affect metabolic health. However, the detailed mechanisms underlying this process remain unclear. Both estrogens and exercise have been shown to improve metabolic health, which may be partly mediated by circulating microRNA (c-miR) signaling. In recent years, extracellular vesicles (EV) have increased interest in the field of tissue crosstalk. However, in many studies on EV-carried miRs, the co-isolation of high-density lipoprotein (HDL) particles with EVs has not been considered, potentially affecting the results. Here, we demonstrate that EV and HDL particles have distinct small RNA (sRNA) content, including both host and nonhost sRNAs. Exercise caused an acute increase in relative miR abundancy in EVs, whereas in HDL particles, it caused an increase in transfer RNA-derived sRNA. Furthermore, we demonstrate that estrogen deficiency caused by menopause blunts acute exercise-induced systemic miR-response in both EV and HDL particles. HIGHLIGHTSO_LIExtracellular vesicles and HDL particles have a distinct sRNA content C_LIO_LIExtracellular vesicles and HDL particles carry both host and nonhost sRNA cargo C_LIO_LIEstrogen deficiency blunts the c-miR-response induced by acute exercise C_LIO_LIExercise responsive miRs in HT users may regulate the choice of energy substrate C_LI

molecular biology↗