Remembrance of things PAS: regulation of development by bHLH–PAS proteins
Strange fits of passion I have known… (W Wordsworth, ‘Strange fits of passion’.) bHLH–PAS proteins are regulators of developmental and physiological events that are well conserved between vertebrates and invertebrates. Recent studies using mouse knockouts of bHLH–PAS genes have provided novel insigh...
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Published in | Current Opinion in Genetics & Development Vol. 9; no. 5; pp. 580 - 587 |
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Main Authors | , |
Format | Book Review Journal Article |
Language | English |
Published |
England
Elsevier Ltd
01.10.1999
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Subjects | |
Online Access | Get full text |
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Abstract | Strange fits of passion I have known…
(W Wordsworth, ‘Strange fits of passion’.)
bHLH–PAS proteins are regulators of developmental and physiological events that are well conserved between vertebrates and invertebrates. Recent studies using mouse knockouts of bHLH–PAS genes have provided novel insight into the roles of hypoxia inducible factors in controlling oxygen-regulated development and homeostasis, and the role of
Single-minded-1 in regulating development and transcription in the hypothalamus. The
Drosophila
spineless and vertebrate
Aryl hydrocarbon receptor bHLH–PAS orthologs both function in chemosensory processes, but in fundamentally different ways.
Spineless controls antennal, limb, and sensory cell development, whereas the Aryl hydrocarbon receptor regulates the response to toxin metabolism. Structural analyses of the PAS domain provide insight into how this interaction domain can act as ligand-binding environmental sensor and signal transducer. |
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AbstractList | bHLH-PAS proteins are regulators of developmental and physiological events that are well conserved between vertebrates and invertebrates. Recent studies using mouse knockouts of bHLH-PAS genes have provided novel insight into the roles of hypoxia inducible factors in controlling oxygen-regulated development and homeostasis, and the role of Single-minded-1 in regulating development and transcription in the hypothalamus. The Drosophila spineless and vertebrate Aryl hydrocarbon receptor bHLH-PAS orthologs both function in chemosensory processes, but in fundamentally different ways. Spineless controls antennal, limb, and sensory cell development, whereas the Aryl hydrocarbon receptor regulates the response to toxin metabolism. Structural analyses of the PAS domain provide insight into how this interaction domain can act as ligand-binding environmental sensor and signal transducer. Strange fits of passion I have knownellipsis (W Wordsworth, 'Strange fits of passion'.) bHLH-PAS proteins are regulators of developmental and physiological events that are well conserved between vertebrates and invertebrates. Recent studies using mouse knockouts of bHLH-PAS genes have provided novel insight into the roles of hypoxia inducible factors in controlling oxygen-regulated development and homeostasis, and the role of Single-minded-1 in regulating development and transcription in the hypothalamus. The Drosophila spineless and vertebrate Aryl hydrocarbon receptor bHLH-PAS orthologs both function in chemosensory processes, but in fundamentally different ways. Spineless controls antennal, limb, and sensory cell development, whereas the Aryl hydrocarbon receptor regulates the response to toxin metabolism. Structural analyses of the PAS domain provide insight into how this interaction domain can act as ligand-binding environmental sensor and signal transducer. Strange fits of passion I have known… (W Wordsworth, ‘Strange fits of passion’.) bHLH–PAS proteins are regulators of developmental and physiological events that are well conserved between vertebrates and invertebrates. Recent studies using mouse knockouts of bHLH–PAS genes have provided novel insight into the roles of hypoxia inducible factors in controlling oxygen-regulated development and homeostasis, and the role of Single-minded-1 in regulating development and transcription in the hypothalamus. The Drosophila spineless and vertebrate Aryl hydrocarbon receptor bHLH–PAS orthologs both function in chemosensory processes, but in fundamentally different ways. Spineless controls antennal, limb, and sensory cell development, whereas the Aryl hydrocarbon receptor regulates the response to toxin metabolism. Structural analyses of the PAS domain provide insight into how this interaction domain can act as ligand-binding environmental sensor and signal transducer. |
Author | Fan, Chen-Ming Crews, Stephen T |
Author_xml | – sequence: 1 givenname: Stephen T surname: Crews fullname: Crews, Stephen T email: steve_crews@unc.edu organization: Department of Biochemistry and Biophysics, The University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599-7260, USA – sequence: 2 givenname: Chen-Ming surname: Fan fullname: Fan, Chen-Ming email: fan@mail1.ciwemb.edu organization: Carnegie Institute of Washington, Department of Embryology, Baltimore, Maryland 21210, USA |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/10508688$$D View this record in MEDLINE/PubMed |
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Snippet | Strange fits of passion I have known…
(W Wordsworth, ‘Strange fits of passion’.)
bHLH–PAS proteins are regulators of developmental and physiological events... Strange fits of passion I have knownellipsis (W Wordsworth, 'Strange fits of passion'.) bHLH-PAS proteins are regulators of developmental and physiological... bHLH-PAS proteins are regulators of developmental and physiological events that are well conserved between vertebrates and invertebrates. Recent studies using... |
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SubjectTerms | Animals Aryl hydrocarbon receptors Cell Lineage Drosophila Drosophila - cytology Drosophila - genetics Helix-Loop-Helix Motifs Homeostasis Hypoxia Mice Oxygen - metabolism PAS domain proteins Protein Conformation spineless gene Transcription Factors - chemistry Transcription Factors - physiology |
Title | Remembrance of things PAS: regulation of development by bHLH–PAS proteins |
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