Publications by authors named "W Brent Derry"

The formation and patterning of unicellular biological tubes is essential for metazoan development. It is well established that vascular tubes and neurons use similar guidance cues to direct their development, but the downstream mechanisms that promote the outgrowth of biological tubes are not well characterized. We show that the conserved kinase MRCK-1 and its substrate the regulatory light chain of non-muscle myosin, MLC-4, are required for outgrowth of the unicellular excretory canal in C.

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The nematode Caenorhabditis elegans is widely employed as a model organism to study basic biological mechanisms. However, transgenic C. elegans are generated by manual injection, which remains low-throughput and labor-intensive, limiting the scope of approaches benefitting from large-scale transgenesis.

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All known heritable phenotypic information in animals is transmitted by direct inheritance of nucleic acids, their covalent modifications or histone modifications that modulate expression of associated genomic regions. Nonetheless, numerous familial traits and disorders cannot be attributed to known heritable molecular factors. Here we identify amyloid-like protein structures that are stably inherited in wild-type animals and influence traits.

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Article Synopsis
  • The study highlights the importance of sensing and responding to osmotic changes for cellular integrity and identifies a relationship between the genes TSC22D2, WNK1, and NRBP1 in managing cell volume.
  • It was found that these gene families form biomolecular condensates within seconds of hyperosmotic stress, a process involving certain protein regions known as intrinsically disordered regions (IDRs).
  • The research suggests that co-evolution of these genes across metazoans has led to efficient regulation of rapid cell volume changes in response to osmolarity through new protein interactions.
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