Inhibition of neuronal process outgrowth and neuronal specific gene activation by the Brn-3b transcription factor
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作者:
Smith, MD
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UNIV COLL & MIDDLESEX SCH MED, DEPT MOL PATHOL, MED MOL BIOL UNIT, LONDON W1P 6DB, ENGLANDUNIV COLL & MIDDLESEX SCH MED, DEPT MOL PATHOL, MED MOL BIOL UNIT, LONDON W1P 6DB, ENGLAND
Smith, MD
[1
]
Dawson, SJ
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UNIV COLL & MIDDLESEX SCH MED, DEPT MOL PATHOL, MED MOL BIOL UNIT, LONDON W1P 6DB, ENGLANDUNIV COLL & MIDDLESEX SCH MED, DEPT MOL PATHOL, MED MOL BIOL UNIT, LONDON W1P 6DB, ENGLAND
Dawson, SJ
[1
]
Latchman, DS
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UNIV COLL & MIDDLESEX SCH MED, DEPT MOL PATHOL, MED MOL BIOL UNIT, LONDON W1P 6DB, ENGLANDUNIV COLL & MIDDLESEX SCH MED, DEPT MOL PATHOL, MED MOL BIOL UNIT, LONDON W1P 6DB, ENGLAND
Latchman, DS
[1
]
机构:
[1] UNIV COLL & MIDDLESEX SCH MED, DEPT MOL PATHOL, MED MOL BIOL UNIT, LONDON W1P 6DB, ENGLAND
The differentiation of the ND7 neuronal cell line to a nondividing phenotype bearing numerous neurite processes is accompanied by a dramatic increase in the levels of the activating POU family transcription factor Brn-3a and a corresponding fall in the levels of the closely related inhibitory factor Bm-Sb. We have previously shown that the artificial overexpression of Brn-3a in these cells can induce neurite outgrowth and the activation of genes encoding synaptic vesicle proteins in the absence of a differentiation-inducing stimulus. Here we show that overexpression of Brn-3b can reduce process outgrowth and synaptic vesicle gene expression following exposure to a stimulus which would normally induce differentiation. These inhibitory effects are abolished by altering a single amino acid in the POU homeodomain of Bm-Sb to its equivalent in Brn-3a. The converse mutation in Brn-3a allows it to inhibit process outgrowth in response to a differentiation-inducing stimulus. Hence a single amino acid difference results in these closely related factors having opposite effects and allows the balance between them to regulate differentiation.
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UCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLANDUCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLAND
Dawson, SJ
;
Morris, PJ
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UCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLANDUCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLAND
Morris, PJ
;
Latchman, DS
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机构:
UCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLANDUCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLAND
机构:
UCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLANDUCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLAND
Dawson, SJ
;
Morris, PJ
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h-index: 0
机构:
UCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLANDUCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLAND
Morris, PJ
;
Latchman, DS
论文数: 0引用数: 0
h-index: 0
机构:
UCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLANDUCL, SCH MED, MED MOLEC BIOL UNIT, DEPT MOLEC PATHOL, LONDON W1P 6DB, ENGLAND