Post-transcriptional regulatory mechanisms are of fundamental importance to form robust genetic networks, but their roles in stem cell pluripotency remain poorly understood. Here, we use freshwater planarians as a model system to investigate this and uncover a role for CCR4-NOT mediated deadenylation of mRNAs in stem cell differentiation. Planarian adult stem cells, the so-called neoblasts, drive the almost unlimited regenerative capabilities of planarians and allow their ongoing homeostatic tissue turnover. While many genes have been demonstrated to be required for these processes, currently almost no mechanistic insight is available into their regulation. We show that knockdown of planarian Not1, the CCR4-NOT deadenylating complex scaffol...
In contrast to transcriptional regulation, the function of alternative splicing (AS) in stem cells i...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Cataloged from PDF ve...
Precise regulation of gene expression is crucial for the maintenance of pluripotency and proper diff...
<div><p>Post-transcriptional regulatory mechanisms are of fundamental importance to form robust gene...
AbstractPlanarian regeneration depends on the presence and precise regulation of pluripotent adult s...
SummaryPluripotency is a central, well-studied feature of embryonic development, but the role of plu...
Planarians owe their remarkable regenerative capabilities to somatic pluripotent stem cells or neobl...
| Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent st...
Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent stem...
Planarian regeneration depends on the presence and precise regulation of pluripotent adult somatic s...
In multicellular organisms, cell type diversity and fate depend on specific sets of transcript isofo...
Background: Planarian stem cells, or neoblasts, drive the almost unlimited regeneration capacities o...
SummaryPlanarians have been a classic model system for the study of regeneration, tissue homeostasis...
BACKGROUND: Planarian stem cells, or neoblasts, drive the almost unlimited regeneration capacities o...
In developmental biology, the regulation of stem cell plasticity and differentiation remains an open...
In contrast to transcriptional regulation, the function of alternative splicing (AS) in stem cells i...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Cataloged from PDF ve...
Precise regulation of gene expression is crucial for the maintenance of pluripotency and proper diff...
<div><p>Post-transcriptional regulatory mechanisms are of fundamental importance to form robust gene...
AbstractPlanarian regeneration depends on the presence and precise regulation of pluripotent adult s...
SummaryPluripotency is a central, well-studied feature of embryonic development, but the role of plu...
Planarians owe their remarkable regenerative capabilities to somatic pluripotent stem cells or neobl...
| Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent st...
Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent stem...
Planarian regeneration depends on the presence and precise regulation of pluripotent adult somatic s...
In multicellular organisms, cell type diversity and fate depend on specific sets of transcript isofo...
Background: Planarian stem cells, or neoblasts, drive the almost unlimited regeneration capacities o...
SummaryPlanarians have been a classic model system for the study of regeneration, tissue homeostasis...
BACKGROUND: Planarian stem cells, or neoblasts, drive the almost unlimited regeneration capacities o...
In developmental biology, the regulation of stem cell plasticity and differentiation remains an open...
In contrast to transcriptional regulation, the function of alternative splicing (AS) in stem cells i...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Cataloged from PDF ve...
Precise regulation of gene expression is crucial for the maintenance of pluripotency and proper diff...