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1.
Sci Rep ; 8(1): 16000, 2018 10 30.
Article in English | MEDLINE | ID: mdl-30375428

ABSTRACT

Breast cancer is the most frequent tumor in women, and in nearly two-thirds of cases, the tumors express estrogen receptor α (ERα, encoded by ESR1). Here, we performed whole-exome sequencing of 16 breast cancer tissues classified according to ESR1 expression and 12 samples of whole blood, and detected 310 somatic mutations in cancer tissues with high levels of ESR1 expression. Of the somatic mutations validated by a different deep sequencer, a novel nonsense somatic mutation, c.2830 C>T; p.Gln944*, in transcriptional regulator switch-independent 3 family member A (SIN3A) was detected in breast cancer of a patient. Part of the mutant protein localized in the cytoplasm in contrast to the nuclear localization of ERα, and induced a significant increase in ESR1 mRNA. The SIN3A mutation obviously enhanced MCF7 cell proliferation. In tissue sections from the breast cancer patient with the SIN3A c.2830 C>T mutation, cytoplasmic SIN3A localization was detected within the tumor regions where nuclear enlargement was observed. The reduction in SIN3A mRNA correlates with the recurrence of ER-positive breast cancers on Kaplan-Meier plots. These observations reveal that the SIN3A mutation has lost its transcriptional repression function due to its cytoplasmic localization, and that this repression may contribute to the progression of breast cancer.


Subject(s)
Breast Neoplasms/genetics , Estrogen Receptor alpha/genetics , Neoplasm Recurrence, Local/genetics , Repressor Proteins/genetics , Adult , Aged , Aged, 80 and over , Breast Neoplasms/pathology , Cell Proliferation/genetics , Disease-Free Survival , Female , Gene Expression Regulation, Neoplastic , Humans , Kaplan-Meier Estimate , MCF-7 Cells , Middle Aged , Mutation/genetics , Neoplasm Recurrence, Local/pathology , RNA, Messenger/genetics , Signal Transduction/genetics , Sin3 Histone Deacetylase and Corepressor Complex , Exome Sequencing
2.
J Vet Med Sci ; 79(6): 1003-1012, 2017 Jun 10.
Article in English | MEDLINE | ID: mdl-28442638

ABSTRACT

We aimed to determine gene expression patterns in the anterior pituitary (AP) of heifers before and after ovulation via deep sequencing of the transcriptome (RNA-seq) to identify new genes and clarify important pathways. Heifers were slaughtered on the estrus day (pre-ovulation; n=5) or 3 days after ovulation (post-ovulation; n=5) for AP collection. We randomly selected 4 pre-ovulation and 4 post-ovulation APs, and the ribosomal RNA-depleted poly (A)+RNA were prepared to assemble next-generation sequencing libraries. The bovine APs expressed 12,769 annotated genes at pre- or post-ovulation. The sum of the reads per kilobase of exon model per million mapped reads (RPKM) values of all transcriptomes were 599,676 ± 38,913 and 668,209 ± 23,690, and 32.2 ± 2.6% and 44.0 ± 4.4% of these corresponded to the AP hormones in the APs of pre- and post-ovulation heifers, respectively. The bovine AP showed differential expression of 396 genes (P<0.05) in the pre- and post-ovulation APs. The 396 genes included two G-protein-coupled receptor (GPCR) genes (GPR61 and GPR153) and those encoding 13 binding proteins. The AP also expressed 259 receptor and other 364 binding proteins. Moreover, ingenuity pathway analysis for the 396 genes revealed (P=2.4 × 10-3) a canonical pathway linking GPCR to cytoskeleton reorganization, actin polymerization, microtubule growth, and gene expression. Thus, the present study clarified the novel genes found to be differentially expressed before and after ovulation and clarified an important pathway in the AP.


Subject(s)
Cattle/genetics , Ovulation/genetics , Pituitary Gland, Anterior/metabolism , Transcriptome , Animals , Female , Gene Regulatory Networks , High-Throughput Nucleotide Sequencing , Molecular Sequence Annotation , Real-Time Polymerase Chain Reaction , Receptors, Cell Surface/genetics , Sequence Analysis, RNA , Software
3.
J Nutr ; 144(10): 1509-16, 2014 Oct.
Article in English | MEDLINE | ID: mdl-25122651

ABSTRACT

BACKGROUND: Low placental fatty acid (FA) transport during the embryonic period has been suggested to result in fetal developmental disorders and various adult metabolic diseases, but the molecular mechanism by which FAs are transported through the placental unit remains largely unknown. OBJECTIVE: The aim of this study was to examine the distribution and functional relevance of FA binding protein (FABP), a cellular chaperone of FAs, in the mouse placenta. METHODS: We clarified the localization of FABPs and sought to examine their function in placental FA transport through the phenotypic analysis of Fabp3-knockout mice. RESULTS: Four FABPs (FABP3, FABP4, FABP5, and FABP7) were expressed with spatial heterogeneity in the placenta, and FABP3 was dominantly localized to the trophoblast cells. In placentas from the Fabp3-knockout mice (both sexes), the transport coefficients for linoleic acid (LA) were significantly reduced compared with those from wild-type mice by 25% and 44% at embryonic day (E) 15.5 and E18.5, respectively, whereas those for α-linolenic acid (ALA) were reduced by 19% and 17%, respectively. The accumulation of LA (18% and 27% at E15.5 and E18.5) and ALA (16% at E15.5) was also significantly less in the Fabp3-knockout fetuses than in wild-type fetuses. In contrast, transport and accumulation of palmitic acid (PA) were unaffected and glucose uptake significantly increased by 23% in the gene-ablated mice compared with wild-type mice at E18.5. Incorporation of LA (51% and 52% at 1 and 60 min, respectively) and ALA (23% at 60 min), but not PA, was significantly less in FABP3-knockdown BeWo cells than in controls, whereas glucose uptake was significantly upregulated by 51%, 50%, 31%, and 33% at 1, 20, 40, and 60 min, respectively. CONCLUSIONS: Collectively FABP3 regulates n-3 (ω-3) and n-6 (ω-6) polyunsaturated FA transport in trophoblasts and plays a pivotal role in fetal development.


Subject(s)
Fatty Acid-Binding Proteins/metabolism , Fatty Acids, Omega-3/metabolism , Fatty Acids, Omega-6/metabolism , Placenta/metabolism , Trophoblasts/metabolism , Animals , Biological Transport , Fatty Acid Binding Protein 3 , Fatty Acid-Binding Protein 7 , Fatty Acid-Binding Proteins/genetics , Female , Fetus/drug effects , Fetus/metabolism , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Neoplasm Proteins/genetics , Neoplasm Proteins/metabolism , Nerve Tissue Proteins/genetics , Nerve Tissue Proteins/metabolism , Pregnancy , Trophoblasts/drug effects , Up-Regulation
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