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1.
Nat Commun ; 15(1): 3657, 2024 May 08.
Article En | MEDLINE | ID: mdl-38719795

Cell states are regulated by the response of signaling pathways to receptor ligand-binding and intercellular interactions. High-resolution imaging has been attempted to explore the dynamics of these processes and, recently, multiplexed imaging has profiled cell states by achieving a comprehensive acquisition of spatial protein information from cells. However, the specificity of antibodies is still compromised when visualizing activated signals. Here, we develop Precise Emission Canceling Antibodies (PECAbs) that have cleavable fluorescent labeling. PECAbs enable high-specificity sequential imaging using hundreds of antibodies, allowing for reconstruction of the spatiotemporal dynamics of signaling pathways. Additionally, combining this approach with seq-smFISH can effectively classify cells and identify their signal activation states in human tissue. Overall, the PECAb system can serve as a comprehensive platform for analyzing complex cell processes.


Fluorescent Antibody Technique , Humans , Fluorescent Antibody Technique/methods , Signal Transduction , Antibodies/immunology , Animals , In Situ Hybridization, Fluorescence/methods , Microscopy, Fluorescence/methods , Fluorescent Dyes/chemistry , Single Molecule Imaging/methods
2.
Nat Commun ; 15(1): 3266, 2024 Apr 16.
Article En | MEDLINE | ID: mdl-38627502

DNA methyltransferase 3A (DNMT3A) and its catalytically inactive cofactor DNA methyltransferase 3-Like (DNMT3L) proteins form functional heterotetramers to deposit DNA methylation in mammalian germ cells. While both proteins have an ATRX-DNMT3-DNMT3L (ADD) domain that recognizes histone H3 tail unmethylated at lysine-4 (H3K4me0), the combined and differential roles of the domains in the two proteins have not been fully defined in vivo. Here we investigate DNA methylation landscapes in female and male germ cells derived from mice with loss-of-function amino acid substitutions in the ADD domains of DNMT3A and/or DNMT3L. Mutations in either the DNMT3A-ADD or the DNMT3L-ADD domain moderately decrease global CG methylation levels, but to different degrees, in both germ cells. Furthermore, when the ADD domains of both DNMT3A and DNMT3L lose their functions, the CG methylation levels are much more reduced, especially in oocytes, comparable to the impact of the Dnmt3a/3L knockout. In contrast, aberrant accumulation of non-CG methylation occurs at thousands of genomic regions in the double mutant oocytes and spermatozoa. These results highlight the critical role of the ADD-H3K4me0 binding in proper CG and non-CG methylation in germ cells and the various impacts of the ADD domains of the two proteins.


DNA Methylation , DNA Methyltransferase 3A , Animals , Female , Male , Mice , DNA (Cytosine-5-)-Methyltransferases/metabolism , Germ Cells/metabolism , Histones/metabolism , Transcription Factors/metabolism
3.
PLoS Genet ; 19(8): e1010855, 2023 08.
Article En | MEDLINE | ID: mdl-37527244

Establishment of a proper DNA methylation landscape in mammalian oocytes is important for maternal imprinting and embryonic development. De novo DNA methylation in oocytes is mediated by the DNA methyltransferase DNMT3A, which has an ATRX-DNMT3-DNMT3L (ADD) domain that interacts with histone H3 tail unmethylated at lysine-4 (H3K4me0). The domain normally blocks the methyltransferase domain via intramolecular interaction and binding to histone H3K4me0 releases the autoinhibition. However, H3K4me0 is widespread in chromatin and the role of the ADD-histone interaction has not been studied in vivo. We herein show that amino-acid substitutions in the ADD domain of mouse DNMT3A cause dwarfism. Oocytes derived from homozygous females show mosaic loss of CG methylation and almost complete loss of non-CG methylation. Embryos derived from such oocytes die in mid-to-late gestation, with stochastic and often all-or-none-type CG-methylation loss at imprinting control regions and misexpression of the linked genes. The stochastic loss is a two-step process, with loss occurring in cleavage-stage embryos and regaining occurring after implantation. These results highlight an important role for the ADD domain in efficient, and likely processive, de novo CG methylation and pose a model for stochastic inheritance of epigenetic perturbations in germ cells to the next generation.


DNA Methylation , Histones , Humans , Female , Mice , Male , Animals , Pregnancy , Histones/metabolism , DNA Methylation/genetics , DNA (Cytosine-5-)-Methyltransferases/metabolism , Chromosomes, Human, Y , DNA Methyltransferase 3A , Mosaicism , Oocytes/metabolism , Transcription Factors/genetics , DNA Modification Methylases , Mammals/genetics
4.
Curr Opin Struct Biol ; 81: 102615, 2023 08.
Article En | MEDLINE | ID: mdl-37257205

Higher-order genomic structures play a critical role in regulating gene expression by influencing the spatial proximity of promoters and enhancers. Live-cell imaging studies have demonstrated that three-dimensional genome structures undergo dynamic changes over time. Transcription is also dynamic, with genes frequently switching between active and inactive states. Recent observations suggest that the formation of condensates, composed of transcription-related factors, RNA, and RNA-binding proteins, around genes can regulate transcription. Advancements in technology have facilitated the visualization of the intricate spatiotemporal relationship between higher-order genomic structures, condensate formation, and transcriptional activity in living cells.


Genome , Transcription Factors , Genomics , Promoter Regions, Genetic , Chromatin
5.
Methods Mol Biol ; 2577: 103-122, 2023.
Article En | MEDLINE | ID: mdl-36173569

The Spliced TetO REpeAt, MS2 repeat, and INtein sandwiched reporter Gene tag (STREAMING-tag) system enables imaging of nuclear localization as well as the transcription activity of a specific endogenous gene at sub-100-nm resolution in living cells. The use of this system combined with imaging of epigenome states enables a detailed analysis of the impact of epigenome status on transcriptional dynamics. In this chapter, we describe a method for quantifying distances between Nanog gene and clusters of cofactor BRD4 using the STREAMING-tag system in mouse embryonic stem cells.


Transcription Factors , Transcription, Genetic , Animals , Mice , Mouse Embryonic Stem Cells , Nuclear Proteins , Technology , Transcription Factors/genetics
6.
Nat Commun ; 13(1): 7672, 2022 12 20.
Article En | MEDLINE | ID: mdl-36539402

Transcription is a dynamic process. To detect the dynamic relationship among protein clusters of RNA polymerase II and coactivators, gene loci, and transcriptional activity, we insert an MS2 repeat, a TetO repeat, and inteins with a selection marker just downstream of the transcription start site. By optimizing the individual elements, we develop the Spliced TetO REpeAt, MS2 repeat, and INtein sandwiched reporter Gene tag (STREAMING-tag) system. Clusters of RNA polymerase II and BRD4 are observed proximal to the transcription start site of Nanog when the gene is transcribed in mouse embryonic stem cells. In contrast, clusters of MED19 and MED22 tend to be located near the transcription start site, even without transcription activity. Thus, the STREAMING-tag system reveals the spatiotemporal relationships between transcriptional activity and protein clusters near the gene. This powerful tool is useful for quantitatively understanding transcriptional regulation in living cells.


RNA Polymerase II , Transcription Factors , Animals , Mice , Transcription Factors/genetics , Transcription Factors/metabolism , RNA Polymerase II/genetics , RNA Polymerase II/metabolism , Nuclear Proteins/metabolism , Gene Expression Regulation , Inteins/genetics , Transcription, Genetic
7.
PLoS Genet ; 17(5): e1009570, 2021 05.
Article En | MEDLINE | ID: mdl-34048432

DNA methylation at CG sites is important for gene regulation and embryonic development. In mouse oocytes, de novo CG methylation requires preceding transcription-coupled histone mark H3K36me3 and is mediated by a DNA methyltransferase DNMT3A. DNMT3A has a PWWP domain, which recognizes H3K36me2/3, and heterozygous mutations in this domain, including D329A substitution, cause aberrant CG hypermethylation of regions marked by H3K27me3 in somatic cells, leading to a dwarfism phenotype. We herein demonstrate that D329A homozygous mice show greater CG hypermethylation and severer dwarfism. In oocytes, D329A substitution did not affect CG methylation of H3K36me2/3-marked regions, including maternally methylated imprinting control regions; rather, it caused aberrant hypermethylation in regions lacking H3K36me2/3, including H3K27me3-marked regions. Thus, the role of the PWWP domain in CG methylation seems similar in somatic cells and oocytes; however, there were cell-type-specific differences in affected regions. The major satellite repeat was also hypermethylated in mutant oocytes. Contrary to the CA hypomethylation in somatic cells, the mutation caused hypermethylation at CH sites, including CA sites. Surprisingly, oocytes expressing only the mutated protein could support embryonic and postnatal development. Our study reveals that the DNMT3A PWWP domain is important for suppressing aberrant CG hypermethylation in both somatic cells and oocytes but that D329A mutation has little impact on the developmental potential of oocytes.


DNA (Cytosine-5-)-Methyltransferases/chemistry , DNA (Cytosine-5-)-Methyltransferases/metabolism , DNA Methylation , Mutation , Oocytes/metabolism , Protein Domains , Amino Acid Substitution , Animals , DNA (Cytosine-5-)-Methyltransferases/genetics , DNA Methyltransferase 3A , Female , Histones/chemistry , Histones/metabolism , Male , Mice , Phenotype , Protein Domains/genetics , Transcriptome
8.
Biosci Rep ; 41(2)2021 02 26.
Article En | MEDLINE | ID: mdl-33600578

We have previously reported a novel homozygous 4-bp deletion in DDHD1 as the responsible variant for spastic paraplegia type 28 (SPG28; OMIM#609340). The variant causes a frameshift, resulting in a functionally null allele in the patient. DDHD1 encodes phospholipase A1 (PLA1) catalyzing phosphatidylinositol to lysophosphatidylinositol (LPI). To clarify the pathogenic mechanism of SPG28, we established Ddhd1 knockout mice (Ddhd1[-/-]) carrying a 5-bp deletion in Ddhd1, resulting in a premature termination of translation at a position similar to that of the patient. We observed a significant decrease in foot-base angle (FBA) in aged Ddhd1(-/-) (24 months of age) and a significant decrease in LPI 20:4 (sn-2) in Ddhd1(-/-) cerebra (26 months of age). These changes in FBA were not observed in 14 months of age. We also observed significant changes of expression levels of 22 genes in the Ddhd1(-/-) cerebra (26 months of age). Gene Ontology (GO) terms relating to the nervous system and cell-cell communications were significantly enriched. We conclude that the reduced signaling of LPI 20:4 (sn-2) by PLA1 dysfunction is responsible for the locomotive abnormality in SPG28, further suggesting that the reduction of downstream signaling such as GPR55 which is agonized by LPI is involved in the pathogenesis of SPG28.


Genetic Diseases, Inborn/physiopathology , Locomotion/physiology , Paraplegia/physiopathology , Animals , Genetic Diseases, Inborn/genetics , Mice , Mice, Knockout , Paraplegia/genetics , Signal Transduction
9.
J Bone Miner Metab ; 38(1): 86-98, 2020 Jan.
Article En | MEDLINE | ID: mdl-31420748

Absorption of oral immediate-release (IR) risedronate tablets is reduced by food intake, thus a delayed-release (DR) tablet has been developed to overcome the necessity of taking IR tablets under fasting conditions. This randomized, double-blind, phase II/III study compared efficacy and safety of risedronate IR once-daily (QD) and DR once-monthly (QM) tablets in Japanese patients with involutional osteoporosis. Patients received 2.5 mg IR on awakening QD, or 25 or 37.5 mg DR on awakening, following breakfast, or 30 min after breakfast, QM for 12 months. Primary endpoint was non-inferiority in mean percent change from baseline to end of study (month 12, last observation carried forward [M12, LOCF]) in mean lumbar spine (L2-L4) bone mineral density (BMD) between risedronate IR on awakening and DR following breakfast. Mean percent changes in (L2-L4) BMD at M12, LOCF were 5.07% (IR at awakening, n = 190), 3.36% (25 mg DR following breakfast, n = 194), and 4.11% (37.5 mg DR following breakfast, n = 181). Mean percent change in (L2-L4) BMD was numerically lower in the DR following breakfast groups versus the respective on awakening and 30 min after breakfast DR groups. Overall incidences of treatment-emergent adverse events (TEAEs) were comparable between groups. In the DR groups, 1.5-4.0% of patients reported TEAEs potentially associated with acute-phase reactions versus 0% in the IR group. In this study, non-inferiority could not be declared for 37.5 or 25 mg DR following breakfast QM (p = 0.1346 or p = 0.6711, respectively) versus 2.5 mg IR on awakening QD.


Asian People , Osteoporosis/drug therapy , Risedronic Acid/therapeutic use , Aged , Biomarkers/metabolism , Bone Density/drug effects , Bone Density Conservation Agents/therapeutic use , Bone Remodeling/drug effects , Double-Blind Method , Drug Administration Schedule , Female , Humans , Male , Osteoporosis/complications , Patient Compliance , Risedronic Acid/adverse effects , Risedronic Acid/pharmacology , Spinal Fractures/complications , Treatment Outcome
10.
Genes Cells ; 25(1): 54-64, 2020 Jan.
Article En | MEDLINE | ID: mdl-31733167

Monoallelic gene expression occurs in various mammalian cells and can be regulated genetically, epigenetically and/or stochastically. We identified 145 monoallelically expressed genes (MoEGs), including seven known imprinted genes, in mouse embryonic stem cells (ESCs) derived from reciprocal F1 hybrid blastocysts and cultured in 2i/LIF. As all MoEGs except for the imprinted genes were expressed in a genetic-origin-dependent manner, we focused on this class of MoEGs for mechanistic studies. We showed that a majority of the genetic-origin-dependent MoEGs identified in 2i/LIF ESCs remain monoallelically expressed in serum/LIF ESCs, but become more relaxed or even biallelically expressed upon differentiation. These MoEGs and their regulatory regions were highly enriched for single nucleotide polymorphisms. In addition, some MoEGs were associated with retrotransposon insertions/deletions, consistent with the fact that certain retrotransposons act as regulatory elements in pluripotent stem cells. Interestingly, most MoEGs showed allelic differences in enrichment of histone H3K27me and H3K4me marks, linking allelic epigenetic differences and monoallelic expression. In contrast, there was little or no allelic difference in CpG methylation or H3K9me. Taken together, our study highlights the impact of genetic variation including single nucleotide polymorphisms and retrotransposon insertions/deletions on monoallelic epigenetic marks and expression in ESCs.


Gene Expression Regulation, Developmental/genetics , Mouse Embryonic Stem Cells/metabolism , Transcriptome/genetics , Alleles , Animals , Cell Differentiation/genetics , Cell Line , DNA Methylation/genetics , Embryonic Stem Cells/metabolism , Epigenesis, Genetic/genetics , Epigenomics/methods , Female , Gene Expression/genetics , Gene Expression Profiling/methods , Genomic Imprinting/genetics , Male , Mice , Mice, Inbred Strains , Pluripotent Stem Cells/metabolism
11.
Sci Rep ; 9(1): 10181, 2019 07 15.
Article En | MEDLINE | ID: mdl-31308441

Exposure to maternal diabetes during pregnancy results in diabetes in offspring, but its underlying mechanisms are unclear. Here, we investigated the phenotype and molecular defects of the offspring of poorly controlled diabetic female mice generated by streptozotocin (STZ) administration. Offspring was exposed to maternal diabetes during pregnancy and lactation. The body weight of STZ offspring was lower than that of control offspring at birth and in adulthood, and glucose tolerance was impaired in adult STZ offspring. Interestingly, the phenotype was more pronounced in male offspring. We next investigated the morphology of islets and expression of ß cell-related genes, but no significant changes were observed. However, transcriptome analysis of the liver revealed activation of the fork head box protein O1 (Foxo1) pathway in STZ male offspring. Notably, two key gluconeogenesis enzyme genes, glucose 6 phosphatase catalytic subunit (G6pc) and phosphoenolpyruvate carboxykinase 1 (Pck1), were upregulated. Consistent with this finding, phosphorylation of Foxo1 was decreased in the liver of STZ male offspring. These changes were not obvious in female offspring. The activation of Foxo1 and gluconeogenesis in the liver may have contributed to the impaired glucose tolerance of STZ male offspring.


Diabetes Mellitus, Experimental/metabolism , Forkhead Box Protein O1/metabolism , Glucose Intolerance/etiology , Animals , Blood Glucose/metabolism , Diabetes, Gestational/metabolism , Female , Forkhead Box Protein O1/physiology , Gluconeogenesis/genetics , Glucose Intolerance/metabolism , Glucose-6-Phosphatase/metabolism , Insulin/metabolism , Insulin-Secreting Cells/metabolism , Lactation/physiology , Male , Mice , Mice, Inbred C57BL , Phosphoenolpyruvate Carboxykinase (GTP)/metabolism , Pregnancy , Streptozocin/pharmacology
12.
Cell Rep ; 27(6): 1742-1754.e6, 2019 05 07.
Article En | MEDLINE | ID: mdl-31067460

Placental development is a key event in mammalian reproduction and embryogenesis. However, the molecular basis underlying placental development is not fully understood. Here, we conduct a forward genetic screen to identify regulators for extraembryonic development and identify Zfp281 as a key factor. Zfp281 overexpression in mouse embryonic stem cells facilitates the induction of trophoblast stem-like cells. Zfp281 is preferentially expressed in the undifferentiated trophoblast stem cell population in an FGF-dependent manner, and disruption of Zfp281 in mice causes severe defects in early placental development. Consistently, Zfp281-depleted trophoblast stem cells exhibit defects in maintaining the transcriptome and differentiation capacity. Mechanistically, Zfp281 interacts with MLL or COMPASS subunits and occupies the promoters of its target genes. Importantly, ZNF281, the human ortholog of this factor, is required to stabilize the undifferentiated status of human trophoblast stem cells. Thus, we identify Zfp281 as a conserved factor for the maintenance of trophoblast stem cell plasticity.


Placentation/genetics , Repressor Proteins/metabolism , Stem Cells/metabolism , Transcription Factors/metabolism , Transcriptome/genetics , Trophoblasts/cytology , Animals , Base Sequence , Cell Differentiation/genetics , Cell Line , Embryonic Stem Cells/cytology , Embryonic Stem Cells/drug effects , Embryonic Stem Cells/metabolism , Epigenesis, Genetic/drug effects , Female , Fibroblast Growth Factors/pharmacology , Gene Expression Regulation, Developmental/drug effects , Genetic Loci , Genetic Testing , Haploidy , Histones/metabolism , Humans , Lysine/metabolism , Methylation , Mice, Knockout , Placentation/drug effects , Pregnancy , Stem Cells/drug effects , Transcription, Genetic
13.
PLoS Genet ; 13(10): e1007042, 2017 Oct.
Article En | MEDLINE | ID: mdl-28976982

The methylation of cytosine at CG sites in the mammalian genome is dynamically reprogrammed during gametogenesis and preimplantation development. It was previously shown that oocyte-derived DNMT1 (a maintenance methyltransferase) is essential for maintaining and propagating CG methylation at imprinting control regions in preimplantation embryos. In mammalian somatic cells, hemimethylated-CG-binding protein UHRF1 plays a critical role in maintaining CG methylation by recruiting DNMT1 to hemimethylated CG sites. However, the role of UHRF1 in oogenesis and preimplantation development is unknown. In the present study, we show that UHRF1 is mainly, but not exclusively, localized in the cytoplasm of oocytes and preimplantation embryos. However, smaller amounts of UHRF1 existed in the nucleus, consistent with the expected role in DNA methylation. We then generated oocyte-specific Uhrf1 knockout (KO) mice and found that, although oogenesis was itself unaffected, a large proportion of the embryos derived from the KO oocytes died before reaching the blastocyst stage (a maternal effect). Whole genome bisulfite sequencing revealed that blastocysts derived from KO oocytes have a greatly reduced level of CG methylation, suggesting that maternal UHRF1 is essential for maintaining CG methylation, particularly at the imprinting control regions, in preimplantation embryos. Surprisingly, UHRF1 was also found to contribute to de novo CG and non-CG methylation during oocyte growth: in Uhrf1 KO oocytes, transcriptionally-inactive regions gained less methylation, while actively transcribed regions, including the imprinting control regions, were unaffected or only slightly affected. We also found that de novo methylation was defective during the late stage of oocyte growth. To the best of our knowledge, this is the first study to demonstrate the role of UHRF1 in de novo DNA methylation in vivo. Our study reveals multiple functions of UHRF1 during the global epigenetic reprogramming of oocytes and early embryos.


Blastocyst/metabolism , DNA Methylation , Nuclear Proteins/metabolism , Oocytes/metabolism , Animals , CCAAT-Enhancer-Binding Proteins , Cellular Reprogramming , DNA (Cytosine-5-)-Methyltransferase 1 , DNA (Cytosine-5-)-Methyltransferases/genetics , DNA (Cytosine-5-)-Methyltransferases/metabolism , Embryonic Development , Epigenesis, Genetic , Female , Mice , Mice, Inbred C57BL , Mice, Knockout , Nuclear Proteins/deficiency , Nuclear Proteins/genetics , Oocytes/growth & development , Oogenesis , RNA, Messenger/genetics , RNA, Messenger/metabolism , Subcellular Fractions/metabolism , Ubiquitin-Protein Ligases
14.
Bone ; 59: 44-52, 2014 Feb.
Article En | MEDLINE | ID: mdl-24184313

Oral risedronate has been shown to be effective in the treatment of osteoporosis when administered once-daily or once-weekly in Japan. This randomized, double-blind, multicenter 12-month study was conducted to compare the efficacy and tolerability of oral risedronate 75mg once-monthly with 2.5mg once-daily in Japanese patients with involutional osteoporosis. Bone mineral density (BMD), biochemical markers of bone metabolism, fractures, and adverse events (AEs) were evaluated. At the end of the study (Month 12, last observation carried forward [M12, LOCF]), mean percent change (SD) from baseline in lumbar spine (L2-L4) BMD, measured by dual energy X-ray absorptiometry (primary endpoint), was increased by 5.69 (4.00)% in the 2.5mg once-daily group (n=428), and 5.98 (4.54)% in the 75mg once-monthly group (n=422). In the non-inferiority t-test (non-inferiority margin Δ=1.5%), the 75mg once-monthly group was non-inferior to the 2.5mg once-daily group (p<0.0001). The difference between treatment groups was 0.28% (95% CI, -0.31% to 0.88%). Changes in biochemical markers of bone metabolism were generally comparable in the two groups, although decreases in the percent change from baseline in urinary NTX/CRN and CTX/CRN were statistically greater in the 2.5mg once-daily group than the 75mg once-monthly group. The frequency of new vertebral fractures (including aggravation of prevalent fractures) at the end of the study (M12, LOCF) was also similar in the two groups: 1.2% in the 2.5mg once-daily group and 1.3% in the 75mg once-monthly group. The incidence of mild/moderate/severe AEs was 75.5%/6.3%/0.5% in the 2.5mg once-daily group and 77.7%/8.1%/0.7% in the 75mg once-monthly group. AEs associated with gastrointestinal symptoms occurred in approximately 30% of subjects in each group but with no severe cases. AEs potentially associated with acute phase reaction (including symptoms of influenza-like illness or pyrexia starting within 3days of the first dose of the study drug and with a duration of 7days or less) only occurred in the 75mg once-monthly group (2.1%, 9/422 subjects; influenza-like symptoms in 1 subject and pyrexia in 8 subjects), although the incidence was low without any severe cases. In conclusion, risedronate 75mg once-monthly (a dosage which is 30 times higher than risedronate 2.5mg once-daily) had non-inferior efficacy in terms of BMD and was similarly well tolerated compared to the once-daily regimen in Japanese patients with involutional osteoporosis. Consistent with the once-daily and once-weekly dosage, the once-monthly dosage of risedronate 75mg was half that used outside Japan (150mg).


Asian People , Bone Density Conservation Agents/administration & dosage , Bone Density Conservation Agents/therapeutic use , Etidronic Acid/analogs & derivatives , Osteoporosis/drug therapy , Aged , Biomarkers/metabolism , Bone Density/drug effects , Bone Density Conservation Agents/adverse effects , Dose-Response Relationship, Drug , Drug Administration Schedule , Etidronic Acid/administration & dosage , Etidronic Acid/adverse effects , Etidronic Acid/therapeutic use , Female , Humans , Japan/epidemiology , Lumbar Vertebrae/drug effects , Lumbar Vertebrae/pathology , Male , Risedronic Acid , Spinal Fractures/epidemiology , Treatment Outcome
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