scholarly article | Q13442814 |
P819 | ADS bibcode | 2006PNAS..10313022B |
P356 | DOI | 10.1073/PNAS.0605789103 |
P932 | PMC publication ID | 1559746 |
P698 | PubMed publication ID | 16916928 |
P5875 | ResearchGate publication ID | 6871023 |
P50 | author | Jae-Woo Kim | Q62566487 |
P2093 | author name string | Tamara C Otto | |
M Daniel Lane | |||
Robert R Bowers | |||
P2860 | cites work | BMP-binding modules in chordin: a model for signalling regulation in the extracellular space | Q24646285 |
The evolutionarily conserved BMP-binding protein Twisted gastrulation promotes BMP signalling | Q24656491 | ||
Obese gene expression at in vivo levels by fat pads derived from s.c. implanted 3T3-F442A preadipocytes | Q24681106 | ||
HtrA1 serine protease inhibits signaling mediated by Tgfbeta family proteins | Q28245903 | ||
Pref-1, a protein containing EGF-like repeats, inhibits adipocyte differentiation | Q28269495 | ||
Gremlin-mediated BMP antagonism induces the epithelial-mesenchymal feedback signaling controlling metanephric kidney and limb organogenesis | Q28506504 | ||
Reciprocal roles of MSX2 in regulation of osteoblast and adipocyte differentiation | Q28513083 | ||
A novel secretory factor, Neurogenesin-1, provides neurogenic environmental cues for neural stem cells in the adult hippocampus | Q28568364 | ||
Wnt10b deficiency promotes coexpression of myogenic and adipogenic programs in myoblasts | Q28588627 | ||
Mitotic clonal expansion: a synchronous process required for adipogenesis | Q28588756 | ||
Expression of a single transfected cDNA converts fibroblasts to myoblasts | Q29547764 | ||
10T1/2 cells: an in vitro model for molecular genetic analysis of mesodermal determination and differentiation | Q30445896 | ||
Inhibition of hypothalamic fatty acid synthase triggers rapid activation of fatty acid oxidation in skeletal muscle | Q34078570 | ||
Establishment and characterization of a cloned line of C3H mouse embryo cells sensitive to postconfluence inhibition of division | Q34207595 | ||
Analysis of gene expression during differentiation of adipogenic cells in culture and hormonal control of the developmental program | Q34258600 | ||
Induction of fatty acid synthetase synthesis in differentiating 3T3-L1 preadipocytes. | Q34285754 | ||
Transcriptional regulation of gene expression during adipocyte differentiation | Q34296723 | ||
CCAAT/enhancer-binding protein beta is required for mitotic clonal expansion during adipogenesis | Q34327828 | ||
Adipose cell hyperplasia and enhanced glucose disposal in transgenic mice overexpressing GLUT4 selectively in adipose tissue | Q34343775 | ||
Multiple new phenotypes induced in and 3T3 cells treated with 5-azacytidine | Q34418477 | ||
Spontaneous heritable changes leading to increased adipose conversion in 3T3 cells | Q34459851 | ||
Epiblast cells that express MyoD recruit pluripotent cells to the skeletal muscle lineage | Q35098785 | ||
Activation and centromeric localization of CCAAT/enhancer-binding proteins during the mitotic clonal expansion of adipocyte differentiation | Q35205402 | ||
Adipose development: from stem cell to adipocyte | Q36242589 | ||
Differential Roles for Bone Morphogenetic Protein (BMP) Receptor Type IB and IA in Differentiation and Specification of Mesenchymal Precursor Cells to Osteoblast and Adipocyte Lineages | Q36256208 | ||
Commitment of C3H10T1/2 pluripotent stem cells to the adipocyte lineage | Q36448097 | ||
The mouse bone morphogenetic protein-4 gene. Analysis of promoter utilization in fetal rat calvarial osteoblasts and regulation by COUP-TFI orphan receptor | Q36672672 | ||
Phenotypic conversion of cultured mouse embryo cells by aza pyrimidine nucleosides | Q39548154 | ||
Retinoic acid repression of bone morphogenetic protein 4 in inner ear development | Q39737111 | ||
Extracellular matrix-associated bone morphogenetic proteins are essential for differentiation of murine osteoblastic cells in vitro | Q40958301 | ||
Use of monoclonal antibody to detect bone morphogenetic protein-4 (BMP-4). | Q41394644 | ||
Expression of human bone morphogenetic proteins-2 or -4 in murine mesenchymal progenitor C3H10T1/2 cells induces differentiation into distinct mesenchymal cell lineages | Q41510547 | ||
Modulating the transcriptional control of adipogenesis | Q41655698 | ||
Proteolytic cleavage of Chordin as a switch for the dual activities of Twisted gastrulation in BMP signaling | Q41835575 | ||
Commitment of mouse fibroblasts to adipocyte differentiation by DNA transfection | Q42798371 | ||
Understanding Adipocyte Differentiation | Q46119331 | ||
MSX2 promotes osteogenesis and suppresses adipogenic differentiation of multipotent mesenchymal progenitors. | Q54759836 | ||
5-azacytidine induction of stable mesodermal stem cell lineages from 10T1/2 cells: Evidence for regulatory genes controlling determination | Q72747497 | ||
P433 | issue | 35 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | adipocyte | Q357519 |
DNA methylation | Q874745 | ||
P304 | page(s) | 13022-13027 | |
P577 | publication date | 2006-08-17 | |
P1433 | published in | Proceedings of the National Academy of Sciences of the United States of America | Q1146531 |
P1476 | title | Stable stem cell commitment to the adipocyte lineage by inhibition of DNA methylation: role of the BMP-4 gene | |
P478 | volume | 103 |
Q37208047 | A Functional Link between AMPK and Orexin Mediates the Effect of BMP8B on Energy Balance. |
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Q37769112 | A chromatin perspective of adipogenesis. |
Q35095530 | A comprehensive analysis of the dual roles of BMPs in regulating adipogenic and osteogenic differentiation of mesenchymal progenitor cells |
Q35834361 | A1 adenosine receptors play an essential role in protecting the embryo against hypoxia |
Q90893796 | Adipogenesis and metabolic health |
Q37998565 | Adipogenesis: From Stem Cell to Adipocyte |
Q38809397 | Adipose tissue regulates insulin sensitivity: role of adipogenesis, de novo lipogenesis and novel lipids |
Q35715553 | Adipose tissue stem cells meet preadipocyte commitment: going back to the future |
Q42814976 | Ahnak stimulates BMP2-mediated adipocyte differentiation through Smad1 activation |
Q88651938 | Alteration of Bone Mineral Density Differs Between Genders in Obese Subjects After Laparoscopic Sleeve Gastrectomy: Bone Morphogenetic Protein 4 May Count |
Q47097132 | Alterations of protein glycosylation in embryonic stem cells during adipogenesis |
Q28854368 | Amplification of Adipogenic Commitment by VSTM2A |
Q37634014 | Androgens inhibit adipogenesis during human adipose stem cell commitment to preadipocyte formation. |
Q40675675 | Anti-inflammatory properties of bone morphogenetic protein 4 in human adipocytes |
Q42181656 | Association of genetic variants of BMP4 with type 2 diabetes mellitus and clinical traits in a Chinese Han population |
Q38602968 | BBS4 regulates the expression and secretion of FSTL1, a protein that participates in ciliogenesis and the differentiation of 3T3-L1. |
Q37293278 | BMP signaling pathway is required for commitment of C3H10T1/2 pluripotent stem cells to the adipocyte lineage |
Q43911045 | BMP4 and BMP7 induce the white-to-brown transition of primary human adipose stem cells |
Q36653911 | BMP4-mediated brown fat-like changes in white adipose tissue alter glucose and energy homeostasis |
Q26824827 | BMPs and their clinical potentials |
Q47141298 | BMPs as new insulin sensitizers: enhanced glucose uptake in mature 3T3-L1 adipocytes via PPARγ and GLUT4 upregulation. |
Q60961761 | Beyond the bone: Bone morphogenetic protein signaling in adipose tissue |
Q39116293 | Bmp4 expressed in preadipocytes is required for the onset of adipocyte differentiation |
Q39497817 | Bone morphogenetic protein 2 (BMP2) may contribute to partition of energy storage into visceral and subcutaneous fat depots |
Q38312239 | Brown and beige fat: the metabolic function, induction, and therapeutic potential |
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Q30431234 | Cell density-dependent transcriptional activation of endocrine-related genes in human adipose tissue-derived stem cells |
Q38110443 | Cell transplantation therapy for diabetes mellitus: endocrine pancreas and adipocyte [Review] |
Q36916637 | Chromatin and chromatin-modifying proteins in adipogenesis. |
Q43223388 | Corticosteroid-induced kidney dysmorphogenesis is associated with deregulated expression of known cystogenic molecules, as well as Indian hedgehog |
Q41881060 | Cross talk between insulin and bone morphogenetic protein signaling systems in brown adipogenesis. |
Q37428130 | Cultured Human Periosteum-Derived Cells Can Differentiate into Osteoblasts in a Perioxisome Proliferator-Activated Receptor Gamma-Mediated Fashion via Bone Morphogenetic Protein signaling |
Q91742313 | DNA methylation of the PLIN1 promoter downregulates expression in chicken lines |
Q34700590 | Defective osteogenic differentiation in the development of osteosarcoma |
Q39444896 | Depolarization alters phenotype, maintains plasticity of pre-differentiated mesenchymal stem cells |
Q39407102 | Depolarization alters phenotype, maintains plasticity of predifferentiated mesenchymal stem cells |
Q38469502 | Differential lncRNA expression profiles in brown and white adipose tissues |
Q34546872 | Distinct adipogenic differentiation phenotypes of human umbilical cord mesenchymal cells dependent on adipogenic conditions. |
Q39907392 | Downregulated expression of the secreted glycoprotein follistatin-like 1 (Fstl1) is a robust hallmark of preadipocyte to adipocyte conversion |
Q33286093 | Dynamics of adipogenic promoter DNA methylation during clonal culture of human adipose stem cells to senescence |
Q47976856 | Effects of bone morphogenetic protein-4 (BMP-4) on adipocyte differentiation from mouse adipose-derived stem cells. |
Q36003155 | Emerging roles for the transforming growth factor-{beta} superfamily in regulating adiposity and energy expenditure |
Q42453666 | Epigallocatechin Gallate Inhibits Mouse Mesenchymal Stem Cell Differentiation to Adipogenic Lineage |
Q37147061 | Epigenetic DNA Demethylation Causes Inner Ear Stem Cell Differentiation into Hair Cell-Like Cells |
Q50747352 | Epigenetic DNA methylation in the promoters of peroxisome proliferator-activated receptor γ in chicken lines divergently selected for fatness |
Q42823354 | Epigenetic Priming Confers Direct Cell Trans-Differentiation From Adipocyte to Osteoblast in a Transgene-Free State. |
Q42795840 | Epigenetic modifications of the Zfp/ZNF423 gene control murine adipogenic commitment and are dysregulated in human hypertrophic obesity. |
Q34176762 | Epigenetic regulation of adipocyte differentiation and adipogenesis |
Q89140841 | Epigenomic Control of Thermogenic Adipocyte Differentiation and Function |
Q58699530 | Essential role of Ahnak in adipocyte differentiation leading to the transcriptional regulation of Bmpr1α expression |
Q33785831 | Essential role of BMPs in FGF-induced secondary lens fiber differentiation. |
Q36709678 | FTO, obesity and the adolescent brain |
Q90212918 | Functional Implications of DNA Methylation in Adipose Biology |
Q33524582 | Gene expression profiles in Atlantic salmon adipose-derived stromo-vascular fraction during differentiation into adipocytes |
Q46678841 | Genetic influence on dysmorphogenesis in embryos from different rat strains exposed to ethanol in vivo and in vitro |
Q27000360 | Historical perspectives in fat cell biology: the fat cell as a model for the investigation of hormonal and metabolic pathways |
Q35612446 | Identification of BMP and activin membrane-bound inhibitor (BAMBI) as a potent negative regulator of adipogenesis and modulator of autocrine/paracrine adipogenic factors |
Q37872602 | In vitro Differentiation Potential of Mesenchymal Stem Cells |
Q39673628 | Indomethacin promotes adipogenesis of mesenchymal stem cells through a cyclooxygenase independent mechanism |
Q36860037 | Inhibiting DNA methylation switches adipogenesis to osteoblastogenesis by activating Wnt10a |
Q39783162 | Inhibitory effect of evodiamine alone and in combination with rosiglitazone on in vitro adipocyte differentiation and in vivo obesity related to diabetes |
Q36047557 | Intrinsic differences in adipocyte precursor cells from different white fat depots. |
Q34454920 | Involvement of cytoskeleton-associated proteins in the commitment of C3H10T1/2 pluripotent stem cells to adipocyte lineage induced by BMP2/4 |
Q42912088 | Matrix remodeling as stem cell recruitment event: A novel in vitro model for homing of human bone marrow stromal cells to the site of injury shows crucial role of extracellular collagen matrix |
Q39408383 | Mechanical stretch suppresses BMP4 induction of stem cell adipogenesis via upregulating ERK but not through downregulating Smad or p38 |
Q26745520 | Mesenchymal Stem Cells and Metabolic Syndrome: Current Understanding and Potential Clinical Implications |
Q37060793 | MiR-503 inhibits adipogenesis by targeting bone morphogenetic protein receptor 1a. |
Q37210859 | Mitochondrial dysfunction in obesity |
Q37962744 | Molecular Mediators of Mesenchymal Stem Cell Biology |
Q38588243 | Molecular basis of differentiation therapy for soft tissue sarcomas |
Q37736639 | New association of bone morphogenetic protein 4 concentrations with fat distribution in obesity and Exenatide intervention on it. |
Q40971428 | Noggin inactivation affects the number and differentiation potential of muscle progenitor cells in vivo. |
Q34712757 | Notch signaling pathway activation in normal and hyperglycemic rats differs in the stem cells of visceral and subcutaneous adipose tissue |
Q26746261 | Nutrigenomics and Beef Quality: A Review about Lipogenesis |
Q35806814 | Obesity Resistance and Enhanced Insulin Sensitivity in Ahnak-/- Mice Fed a High Fat Diet Are Related to Impaired Adipogenesis and Increased Energy Expenditure |
Q38558581 | Opportunities and challenges in three-dimensional brown adipogenesis of stem cells |
Q37668148 | Overexpressing the novel autocrine/endocrine adipokine WISP2 induces hyperplasia of the heart, white and brown adipose tissues and prevents insulin resistance |
Q35676240 | Pref-1 (preadipocyte factor 1) activates the MEK/extracellular signal-regulated kinase pathway to inhibit adipocyte differentiation |
Q92948023 | Reduced subcutaneous adipogenesis in human hypertrophic obesity is linked to senescent precursor cells |
Q26859278 | Regulation of Adipocyte Differentiation via MicroRNAs |
Q41177139 | Regulation of cyclin D1 and Wnt10b gene expression by cAMP-responsive element-binding protein during early adipogenesis involves differential promoter methylation |
Q37110526 | Restricted adipogenesis in hypertrophic obesity: the role of WISP2, WNT, and BMP4 |
Q39537935 | Retinoic acid inhibits BMP4-induced C3H10T1/2 stem cell commitment to adipocyte via downregulating Smad/p38MAPK signaling |
Q46134215 | Retinoid X Receptor Activation Alters the Chromatin Landscape To Commit Mesenchymal Stem Cells to the Adipose Lineage. |
Q38177814 | Review of Signaling Pathways Governing MSC Osteogenic and Adipogenic Differentiation. |
Q39042452 | Role of bone morphogenetic protein 4 in the differentiation of brown fat-like adipocytes |
Q47130478 | SCARA5 plays a critical role in the commitment of mesenchymal stem cells to adipogenesis |
Q92705326 | Senile Osteoporosis: The Involvement of Differentiation and Senescence of Bone Marrow Stromal Cells |
Q30492259 | Spontaneously beating cardiomyocytes derived from white mature adipocytes. |
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Q90722241 | The Beige Adipocyte as a Therapy for Metabolic Diseases |
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Q33753951 | Transcriptional control of preadipocyte determination by Zfp423. |
Q34333066 | Vitamin D deficiency down-regulates Notch pathway contributing to skeletal muscle atrophy in old wistar rats |
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