LiMe 京都大学医生物学研究所

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DEPARTMENT OF Biosystems ScienceLAB. OF Cell Fate Dynamics and Therapeutics

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MESSAGE FROM THE LAB

Our lab has broad interests in the regulation of cell fates in stem cells and cancer in animals.
We study how stem cell fates are determined and regulated in healthy tissues and organs. We are also working hard to figure out how the regulatory mechanisms for cell fate decision can go awry and drive cancer development and progression. Our recent obsessions include metabolism and cell fates in cancers such as myeloid leukemia. Through our work, we aim to understand the biochemistry behind cell fate regulation. We hope our findings can contribute to developing safe and effective therapeutic strategies for tissue regeneration, frailty and cancer in human. In the lab, we value communication, diversity and inclusion. Want to join us? Please feel free to contact us!

Takahiro Ito

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Associate Professor
Ayuna Hattori

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Assistant Professor
Kenkyo Matsuura

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RESEARCH

Understanding regulatory mechanisms of stem cell fates in tissue and cancer

What determines how stem cells and cancer behave?
The primary goal of our research is to understand the molecular basis of self-renewal and differentiation in stem cells and cancer, i.e. cell fates. Specifically, we study hematopoiesis and myogenesis to identify cellular machinery that regulates tissue homeostasis and regeneration as well as molecular drivers of transformation that lead to human malignancies such as leukemia. We are particularly interested in the stem cell regulatory circuits governed by RNA binding proteins and cellular metabolism. Recent studies, including our own work, have revealed that normal stem cells and cancer share similar cellular hierarchy and regulatory signals while several components are distinct in these tissues. These findings tell us that deciphering the “operating system” in stem cells and cancer could help us to develop new effective therapies for human diseases.

Stem cells in tissues and cancer

We study how stem cell fates are determined and regulated in healthy tissues and cancer.