نتایج جستجو برای: stem cell fate

تعداد نتایج: 1829989  

2013
Christian Elabd Wendy Cousin Robert Y. Chen Marc S. Chooljian Joey T. Pham Irina M. Conboy Michael J. Conboy

Asymmetry of cell fate is one fundamental property of stem cells, in which one daughter cell self-renews, whereas the other differentiates. Evidence of nonrandom template segregation (NRTS) of chromosomes during asymmetric cell divisions in phylogenetically divergent organisms, such as plants, fungi, and mammals, has already been shown. However, before this current work, asymmetric inheritance ...

Journal: :International journal of molecular sciences 2018
Elina Chermnykh Ekaterina Kalabusheva Ekaterina Vorotelyak

Epidermal stem cells reside within the specific anatomic location, called niche, which is a microenvironment that interacts with stem cells to regulate their fate. Regulation of many important processes, including maintenance of stem cell quiescence, self-renewal, and homeostasis, as well as the regulation of division and differentiation, are common functions of the stem cell niche. As it was s...

Journal: :Biotechnology and Bioengineering 2011

Journal: :Proceedings of the National Academy of Sciences 2008

2016
Borzo Gharibi Mandeep Ghuman Francis J. Hughes

Stem cell fate decisions to remain quiescent, self-renew or differentiate are largely governed by the interplay between extracellular signals from the niche and the cell intrinsic signal cascades and transcriptional programs. Here we demonstrate that DNA Damage Inducible Transcript 4 (DDIT4) acts as a link between HIF1α and mTOR signalling and regulation of adult stem cell fate. Global gene exp...

Journal: :Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme 2003
Yoshinori Kawazoe

In an attempt to better understand and control the processes that regulate stem cell fate, we have set out to identify small molecules that induce neuronal differentiation in embryonic stem cells (ESCs). A high-throughput phenotypic cell-based screen of kinase-directed combinatorial libraries led to the discovery of TWS119, a 4,6-disubstituted pyrrolopyrimidine that can induce neurogenesis in m...

2011
Christoph Schaniel Dario Sirabella Jiajing Qiu Xiaohong Niu Ihor R. Lemischka Kateri A. Moore

The role of Wnt signaling in hematopoietic stem cell fate decisions remains controversial. We elected to dysregulate Wnt signaling from the perspective of the stem cell niche by expressing the pan Wnt inhibitor, Wnt inhibitory factor 1 (Wif1), specifically in osteoblasts. Here we report that osteoblastic Wif1 overexpression disrupts stem cell quiescence, leading to a loss of self-renewal potent...

2013
Yi Zhang Jin Yu Chunying Shi Yaqin Huang Yun Wang Tian Yang Jin Yang

Lymphoid enhancer binding factor-1 (Lef1) is an essential regulatory protein in the Wnt signal pathway, which controls cell growth and differentiation. Investigators in the field of skin biology have confirmed that multipotent bulge stem cells (BSCs) are responsible for hair follicle development and regeneration. However, the role of Lef1 remains poorly understood. In this study, we investigate...

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