Analysis of the wnt1 regulatory chromosomal landscape
One of the earliest patterning events in the vertebrate neural plate is the specification of mes/r1, the territory comprising the prospective mesencephalon and the first hindbrain rhombomere. Within mes/r1, an interface of gene expression defines the midbrain–hindbrain boundary (MHB), a lineage rest...
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Veröffentlicht in: | Development genes and evolution 2019-05, Vol.229 (2), p.43-52 |
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Sprache: | eng |
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Zusammenfassung: | One of the earliest patterning events in the vertebrate neural plate is the specification of mes/r1, the territory comprising the prospective mesencephalon and the first hindbrain rhombomere. Within mes/r1, an interface of gene expression defines the midbrain–hindbrain boundary (MHB), a lineage restriction that separates the mesencephalon and rhombencephalon.
wnt1
is critical to mes/r1 development and functions within the MHB as a component of the MHB gene regulatory network (GRN). Despite its importance to these critical and early steps of vertebrate neurogenesis, little is known about the factors responsible for
wnt1
transcriptional regulation. In the zebrafish,
wnt1
and its neighboring paralog,
wnt10b
, are expressed in largely overlapping patterns, suggesting co-regulation. To understand
wnt1
and
wnt10b
transcriptional control, we used a comparative genomics approach to identify relevant enhancers. We show that the
wnt1-wnt10b
locus contains multiple cis-regulatory elements that likely interact to generate the
wnt1
and
wnt10b
expression patterns. Two of 11 conserved enhancers tested show activity restricted to the midbrain and MHB, an activity that is conserved in the distantly related spotted gar orthologous elements. Three non-conserved elements also play a likely role in
wnt1
regulation. The identified enhancers display dynamic modes of chromatin accessibility, suggesting controlled deployment during embryogenesis. Our results suggest that the control of
wnt1
and
wnt10b
expression is under complex regulation involving the interaction of multiple enhancers. |
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ISSN: | 0949-944X 1432-041X |
DOI: | 10.1007/s00427-019-00629-5 |