نتایج جستجو برای: reprogramming

تعداد نتایج: 12767  

2016
Junghyun Jo Sohyun Hwang Hyung Joon Kim Soomin Hong Jeoung Eun Lee Sung-Geum Lee Ahmi Baek Heonjong Han Jin Il Lee Insuk Lee Dong Ryul Lee

Spermatogonial stem cells (SSCs) can spontaneously dedifferentiate into embryonic stem cell (ESC)-like cells, which are designated as multipotent SSCs (mSSCs), without ectopic expression of reprogramming factors. Interestingly, SSCs express key pluripotency genes such as Oct4, Sox2, Klf4 and Myc. Therefore, molecular dissection of mSSC reprogramming may provide clues about novel endogenous repr...

Journal: :Cell 2016
Deepak Srivastava Natalie DeWitt

Cellular reprogramming technology has created new opportunities in understanding human disease, drug discovery, and regenerative medicine. While a combinatorial code was initially found to reprogram somatic cells to pluripotency, a "second generation" of cellular reprogramming involves lineage-restricted transcription factors and microRNAs that directly reprogram one somatic cell to another. Th...

Journal: :Cell reports 2016
Cheng-Xu Delon Toh Jun-Wei Chan Zheng-Shan Chong Hao Fei Wang Hong Chao Guo Sandeep Satapathy Dongrui Ma Germaine Yen Lin Goh Ekta Khattar Lin Yang Vinay Tergaonkar Young-Tae Chang James J Collins George Q Daley Keng Boon Wee Chadi A El Farran Hu Li Yoon-Pin Lim Frederic A Bard Yuin-Han Loh

Incomplete knowledge of the mechanisms at work continues to hamper efforts to maximize reprogramming efficiency. Here, we present a systematic genome-wide RNAi screen to determine the global regulators during the early stages of human reprogramming. Our screen identifies functional repressors and effectors that act to impede or promote the reprogramming process. Repressors and effectors form cl...

Journal: :Cell reports 2014
Junjie Lu Hu Li Ming Hu Takayo Sasaki Anna Baccei David M Gilbert Jun S Liu James J Collins Paul H Lerou

Cell-fate change involves significant genome reorganization, including changes in replication timing, but how these changes are related to genetic variation has not been examined. To study how a change in replication timing that occurs during reprogramming impacts the copy-number variation (CNV) landscape, we generated genome-wide replication-timing profiles of induced pluripotent stem cells (i...

2013
Pooja Motwani Priyanka Fulare

Wireless reprogramming in a wireless sensor network (WSNs) is the process of propagating new code image or relevant commands to sensor nodes. While all existing insecure/secure reprogramming protocols are based on the centralized approach, it is important to support distributed reprogramming in which multiple authorized network users can simultaneously and directly reprogram sensor nodes withou...

2016
Niusha Khazaie Mohammad Massumi Ping Wee Mahdieh Salimi Abdulshakour Mohammadnia Moein Yaqubi

Induced pluripotent stem cells (iPSCs) provide a reliable source for the study of regenerative medicine, drug discovery, and developmental biology. Despite extensive studies on the reprogramming of mouse and human fibroblasts into iPSCs, the efficiency of reprogramming is still low. Here, we used a bioinformatics and systems biology approach to study the two gene regulatory waves governing the ...

Journal: :Development, growth & differentiation 2010
Kazutoshi Takahashi

Direct reprogramming of somatic cells into a pluripotent state has been achieved with a set of just four transcription factors. Many scientists and medical doctors are trying to elucidate the causes of intractable diseases and discover new drugs using the newest types of technology. Various methods have been developed to produce clinical-grade fully reprogrammed cells for cell transplantation t...

Journal: :Cell stem cell 2014
Rongrong Le Zhaohui Kou Yonghua Jiang Ming Li Bo Huang Wenqiang Liu Hui Li Xiaochen Kou Wanzhong He Karl Lenhard Rudolph Zhenyu Ju Shaorong Gao

Although somatic cell nuclear transfer (SCNT) and induction of pluripotency (to form iPSCs) are both recognized reprogramming methods, there has been relatively little comparative analysis of the resulting pluripotent cells. Here, we examine the capacity of these two reprogramming approaches to rejuvenate telomeres using late-generation telomerase-deficient (Terc(-/-)) mice that exhibit telomer...

2017
Arven Saunders Dan Li Francesco Faiola Xin Huang Miguel Fidalgo Diana Guallar Junjun Ding Fan Yang Yang Xu Hongwei Zhou Jianlong Wang

The core pluripotency transcription factor NANOG is critical for embryonic stem cell (ESC) self-renewal and somatic cell reprogramming. Although NANOG is phosphorylated at multiple residues, the role of NANOG phosphorylation in ESC self-renewal is incompletely understood, and no information exists regarding its functions during reprogramming. Here we report our findings that NANOG phosphorylati...

Journal: :Genes & development 2015
Thais Lavagnolli Preksha Gupta Eva Hörmanseder Hegias Mira-Bontenbal Gopuraja Dharmalingam Thomas Carroll John B Gurdon Amanda G Fisher Matthias Merkenschlager

Cohesin is implicated in establishing and maintaining pluripotency. Whether this is because of essential cohesin functions in the cell cycle or in gene regulation is unknown. Here we tested cohesin's contribution to reprogramming in systems that reactivate the expression of pluripotency genes in the absence of proliferation (embryonic stem [ES] cell heterokaryons) or DNA replication (nuclear tr...

نمودار تعداد نتایج جستجو در هر سال

با کلیک روی نمودار نتایج را به سال انتشار فیلتر کنید