Publications by authors named "C Semerad"

Proliferating cells known as neoblasts include pluripotent stem cells (PSCs) that sustain tissue homeostasis and regeneration of lost body parts in planarians. However, the lack of markers to prospectively identify and isolate these adult PSCs has significantly hampered their characterization. We used single-cell RNA sequencing (scRNA-seq) and single-cell transplantation to address this long-standing issue.

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Article Synopsis
  • T cells rely on the endocytic pathway for critical functions like receptor turnover and maintaining the immunological synapse, involving proteins such as Rab GTPases and SNARE complexes, alongside EHD proteins.
  • Researchers created mice lacking specific EHD proteins (EHD1/3/4) and found that these T cells had decreased proliferation and IL-2 secretion when activated.
  • The absence of EHD proteins led to impaired recycling of the TCR-CD3 complex, causing a decrease in its surface levels and contributing to less severe symptoms in a model of autoimmune encephalitis.
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Neural crest cells migrate throughout the embryo, but how cells move in a directed and collective manner has remained unclear. Here, we perform the first single-cell transcriptome analysis of cranial neural crest cell migration at three progressive stages in chick and identify and establish hierarchical relationships between cell position and time-specific transcriptional signatures. We determine a novel transcriptional signature of the most invasive neural crest Trailblazer cells that is consistent during migration and enriched for approximately 900 genes.

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Embryonic neural crest cells travel in discrete streams to precise locations throughout the head and body. We previously showed that cranial neural crest cells respond chemotactically to vascular endothelial growth factor (VEGF) and that cells within the migratory front have distinct behaviors and gene expression. We proposed a cell-induced gradient model in which lead neural crest cells read out directional information from a chemoattractant profile and instruct trailers to follow.

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Neural crest (NC) cell migration is crucial to the formation of peripheral tissues during vertebrate development. However, how NC cells respond to different microenvironments to maintain persistence of direction and cohesion in multicellular streams remains unclear. To address this, we profiled eight subregions of a typical cranial NC cell migratory stream.

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