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Doug Melton

Publications and source records attributed to Doug Melton.

2 recordsLinked to original sources

Signals from lateral plate mesoderm instruct endoderm toward a pancreatic fate.

During embryonic development, organs arise along the gut tube as a series of buds in a stereotyped anterior-posterior (A-P) pattern. Using chick-quail chimeras and in vitro tissue recombination, we studied the interactions governing the induction and maintenance of endodermal organ identify focusing on the pancreas. Though several permissive signals in pancreatic development have been previously identified, here we provide evidence that lateral plate mesoderm sends instructive signals to the endoderm, signals that induce expression of the pancreatic genes Pdx1, p48, Nkx6.1, glucagon, and insulin. Moreover, this instructive signal directs cells to form ectopic insulin-positive islet-like clusters in endoderm that would otherwise form more rostral organs. Once generated, endocrine cells no longer require interaction with mesoderm, but nonendocrine cells continue to require permissive signals from the mesoderm. Stimulation of activin, BMP, or retinoic acid signaling is sufficient to induce Pdx1 expression in endoderm anterior to the pancreas. Lateral plate mesoderm appears to pattern the endoderm in a posterior-dominant fashion as first noted in the patterning of the neural tube at the same embryonic stage. These findings argue for a central role of the mesoderm in coordinating the A-P pattern of all three primary germ layers.

Activins↗

Pancreas specification: a budding question.

Much recent investigation has been carried out into the mechanisms by which the pancreas is specified from the early endoderm. Recent advances have highlighted important roles for retinoic acid and bone morphogenetic protein signalling in patterning the endoderm at late gastrulation. Subsequently, interactions with the endothelium of the aorta in the dorsal pancreas domain and lateral plate mesoderm in the ventral pancreas domain are the source of essential pancreas-inductive signals. Additionally, the transcription factor Ptf1a has been demonstrated to have a previously unappreciated role in distinguishing pancreas from surrounding duodenal fates.

Body Patterning↗