The Transcriptome of Pig Spermatozoa, and Its Role in Fertility
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
Authors: Alvarez-Rodriguez, Manuel; Martinez, Cristina; Wright, Dominic; Barranco, Isabel; Roca, Jordi; Rodriguez-Martinez, Heriberto
Abstract
In the study presented here we identified transcriptomic markers for fertility in the cargo of pig ejaculated spermatozoa using porcine-specific micro-arrays (GeneChip((R)) miRNA 4.0 and GeneChip((R)) Porcine Gene 1.0 ST). We report (i) the relative abundance of the ssc-miR-1285, miR-16, miR-4332, miR-92a, miR-671-5p, miR-4334-5p, miR-425-5p, miR-191, miR-92b-5p and miR-15b miRNAs, and (ii) the presence of 347 up-regulated and 174 down-regulated RNA transcripts in high-fertility breeding boars, based on differences of farrowing rate (FS) and litter size (LS), relative to low-fertility boars in the (Artificial Insemination) AI program. An overrepresentation analysis of the protein class (PANTHER) identified significant fold-increases for C-C chemokine binding (GO:0019957): CCR7, which activates B- and T-lymphocytes, 8-fold increase), XCR1 and CXCR4 (with ubiquitin as a natural ligand, 1.24-fold increase), cytokine receptor activity (GO:0005126): IL23R receptor of the IL23 protein, associated to JAK2 and STAT3, 3.4-fold increase), the TGF-receptor (PC00035) genes ACVR1C and ACVR2B (12-fold increase). Moreover, two micro-RNAs (miR-221 and mir-621) were down- and up-regulated, respectively, in high-fertility males. In conclusion, boars with different fertility performance possess a wide variety of differentially expressed RNA present in spermatozoa that would be attractive targets as non-invasive molecular markers for predicting fertility.
New genetic signatures associated with cancer cachexia as defined by low skeletal muscle index and weight loss
JOURNAL OF CACHEXIA SARCOPENIA AND MUSCLE
Authors: Johns, Neil; Stretch, Cynthia; Tan, Benjamin H. L.; Solheim, Tora S.; Sorhaug, Sveinung; Stephens, Nathan A.; Gioulbasanis, Ioannis; Skipworth, Richard J. E.; Deans, D. A. Christopher; Vigano, Antonio; Ross, James A.; Bathe, Oliver F.; Tremblay, Michel L.; Kaasa, Stein; Strasser, Florian; Gagnon, Bruno; Baracos, Vickie E.; Damaraju, Sambasivarao; Fearon, Kenneth C. H.
Abstract
BackgroundCachexia affects the majority with advanced cancer. Based on current demographic and clinical factors, it is not possible to predict who will develop cachexia or not. Such variation may, in part, be due to genotype. It has recently been proposed to extend the diagnostic criteria for cachexia to include a direct measure of low skeletal muscle index (LSMI) in addition to weight loss (WL). We aimed to explore our panel of candidate single nucleotide polymorphism (SNPs) for association with WL +/- computerized tomography-defined LSMI. We also explored whether the transcription in muscle of identified genes was altered according to such cachexia phenotype MethodsA retrospective cohort study design was used. Analysis explored associations of candidate SNPs with WL (n=1276) and WL+LSMI (n=943). Human muscle transcriptome (n=134) was analysed using an Agilent platform. ResultsSingle nucleotide polymorphisms in the following genes showed association with WL alone: GCKR, LEPR, SELP, ACVR2B, TLR4, FOXO3, IGF1, CPN1, APOE, FOXO1, and GHRL. SNPs in LEPR, ACVR2B, TNF, and ACE were associated with concurrent WL+LSMI. There was concordance between muscle-specific expression for ACVR2B, FOXO1 and 3, LEPR, GCKR, and TLR4 genes and LSMI and/or WL (P<0.05). ConclusionsThe rs1799964 in the TNF gene and rs4291 in the ACE gene are new associations when the definition of cachexia is based on a combination of WL and LSMI. These findings focus attention on pro-inflammatory cytokines and the renin-angiotensin system as biomarkers/mediators of muscle wasting in cachexia.