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Frontiers | How Lipid-Specific T Cells Become Effectors: The  Differentiation of iNKT Subsets | Immunology
Frontiers | How Lipid-Specific T Cells Become Effectors: The Differentiation of iNKT Subsets | Immunology

Translational control of stem cell function | Nature Reviews Molecular Cell  Biology
Translational control of stem cell function | Nature Reviews Molecular Cell Biology

Protein arginine methyltransferase 7–mediated microRNA-221 repression  maintains Oct4, Nanog, and Sox2 levels in mouse embryonic stem cells -  ScienceDirect
Protein arginine methyltransferase 7–mediated microRNA-221 repression maintains Oct4, Nanog, and Sox2 levels in mouse embryonic stem cells - ScienceDirect

The Innate Lymphoid System Is a Critical Player in the Manifestation of  Mucoinflammatory Airway Disease in Mice | The Journal of Immunology
The Innate Lymphoid System Is a Critical Player in the Manifestation of Mucoinflammatory Airway Disease in Mice | The Journal of Immunology

Regulation of microRNA function in somatic stem cell proliferation and  differentiation | Nature Reviews Molecular Cell Biology
Regulation of microRNA function in somatic stem cell proliferation and differentiation | Nature Reviews Molecular Cell Biology

Role of miRNAs in Normal and Myasthenia Gravis Thymus | Immunology -  Frontiers
Role of miRNAs in Normal and Myasthenia Gravis Thymus | Immunology - Frontiers

The Roles of Alternative Splicing in Tumor-immune Cell Interactions |  Bentham Science
The Roles of Alternative Splicing in Tumor-immune Cell Interactions | Bentham Science

Cancers | Free Full-Text | Cancer Stem Cells Are Possible Key Players in  Regulating Anti-Tumor Immune Responses: The Role of Immunomodulating  Molecules and MicroRNAs | HTML
Cancers | Free Full-Text | Cancer Stem Cells Are Possible Key Players in Regulating Anti-Tumor Immune Responses: The Role of Immunomodulating Molecules and MicroRNAs | HTML

Noncanonical functions of microRNA pathway enzymes – Drosha, DGCR8, Dicer  and Ago proteins - Pong - 2018 - FEBS Letters - Wiley Online Library
Noncanonical functions of microRNA pathway enzymes – Drosha, DGCR8, Dicer and Ago proteins - Pong - 2018 - FEBS Letters - Wiley Online Library

Holo-Seq: single-cell sequencing of holo-transcriptome | Genome Biology |  Full Text
Holo-Seq: single-cell sequencing of holo-transcriptome | Genome Biology | Full Text

IJERPH | Free Full-Text | MicroRNAs in Breastmilk and the Lactating Breast:  Potential Immunoprotectors and Developmental Regulators for the Infant and  the Mother | HTML
IJERPH | Free Full-Text | MicroRNAs in Breastmilk and the Lactating Breast: Potential Immunoprotectors and Developmental Regulators for the Infant and the Mother | HTML

Human innate lymphoid cells (ILCs): Toward a uniform immune‐phenotyping -  Trabanelli - 2018 - Cytometry Part B: Clinical Cytometry - Wiley Online  Library
Human innate lymphoid cells (ILCs): Toward a uniform immune‐phenotyping - Trabanelli - 2018 - Cytometry Part B: Clinical Cytometry - Wiley Online Library

Protein arginine methyltransferase 7–mediated microRNA-221 repression  maintains Oct4, Nanog, and Sox2 levels in mouse embryonic stem cells -  Journal of Biological Chemistry
Protein arginine methyltransferase 7–mediated microRNA-221 repression maintains Oct4, Nanog, and Sox2 levels in mouse embryonic stem cells - Journal of Biological Chemistry

Protein arginine methyltransferase 7–mediated microRNA-221 repression  maintains Oct4, Nanog, and Sox2 levels in mouse embryonic stem cells -  Journal of Biological Chemistry
Protein arginine methyltransferase 7–mediated microRNA-221 repression maintains Oct4, Nanog, and Sox2 levels in mouse embryonic stem cells - Journal of Biological Chemistry

The transcriptional regulation of pluripotency | Cell Research
The transcriptional regulation of pluripotency | Cell Research

Cells | Free Full-Text | The Regulatory Activity of Noncoding RNAs in ILCs  | HTML
Cells | Free Full-Text | The Regulatory Activity of Noncoding RNAs in ILCs | HTML

研究者詳細 - 三上 洋平
研究者詳細 - 三上 洋平

A regulatory network of microRNAs confers lineage commitment during early  developmental trajectories of B and T lymphocytes | PNAS
A regulatory network of microRNAs confers lineage commitment during early developmental trajectories of B and T lymphocytes | PNAS

Biomolecules | Free Full-Text | MicroRNAs and Stem-like Properties: The  Complex Regulation Underlying Stemness Maintenance and Cancer Development |  HTML
Biomolecules | Free Full-Text | MicroRNAs and Stem-like Properties: The Complex Regulation Underlying Stemness Maintenance and Cancer Development | HTML

1:An organoid-based organ-repurposing approach to treat short bowel  syndrome.:今月のサイエンス:慶應義塾大学医学部・医学研究科
1:An organoid-based organ-repurposing approach to treat short bowel syndrome.:今月のサイエンス:慶應義塾大学医学部・医学研究科

A regulatory network of microRNAs confers lineage commitment during early  developmental trajectories of B and T lymphocytes | PNAS
A regulatory network of microRNAs confers lineage commitment during early developmental trajectories of B and T lymphocytes | PNAS

MIWI prevents aneuploidy during meiosis by cleaving excess satellite RNA |  The EMBO Journal
MIWI prevents aneuploidy during meiosis by cleaving excess satellite RNA | The EMBO Journal

Effector γδ T Cell Differentiation Relies on Master but Not Auxiliary Th  Cell Transcription Factors | The Journal of Immunology
Effector γδ T Cell Differentiation Relies on Master but Not Auxiliary Th Cell Transcription Factors | The Journal of Immunology

1:An organoid-based organ-repurposing approach to treat short bowel  syndrome.:今月のサイエンス:慶應義塾大学医学部・医学研究科
1:An organoid-based organ-repurposing approach to treat short bowel syndrome.:今月のサイエンス:慶應義塾大学医学部・医学研究科

1:An organoid-based organ-repurposing approach to treat short bowel  syndrome.:今月のサイエンス:慶應義塾大学医学部・医学研究科
1:An organoid-based organ-repurposing approach to treat short bowel syndrome.:今月のサイエンス:慶應義塾大学医学部・医学研究科