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Val66Met polymorphism of BDNF alters prodomain structure to induce neuronal growth cone retraction

Val66Met polymorphism of BDNF alters prodomain structure to induce neuronal growth cone retraction
Val66Met polymorphism of BDNF alters prodomain structure to induce neuronal growth cone retraction
A common single-nucleotide polymorphism (SNP) in the human brain-derived neurotrophic factor (BDNF) gene results in a Val66Met substitution in the BDNF prodomain region. This SNP is associated with alterations in memory and with enhanced risk to develop depression and anxiety disorders in humans. Here we show that the isolated BDNF prodomain is detected in the hippocampus and that it can be secreted from neurons in an activity-dependent manner. Using nuclear magnetic resonance spectroscopy and circular dichroism, we find that the prodomain is intrinsically disordered, and the Val66Met substitution induces structural changes. Surprisingly, application of Met66 (but not Val66) BDNF prodomain induces acute growth cone retraction and a decrease in Rac activity in hippocampal neurons. Expression of p75(NTR) and differential engagement of the Met66 prodomain to the SorCS2 receptor are required for this effect. These results identify the Met66 prodomain as a new active ligand, which modulates neuronal morphology.
2490
Anastasia, Agustin
ed578679-72dc-4b72-b520-86f74a413e7a
Deinhardt, Katrin
5f4fe23b-2317-499f-ba6d-e639a4885dc1
Chao, Moses V.
823c00e2-9f32-4a7b-a2c4-76e7c1fbf83d
Will, Nathan E.
402ed9cf-a9a7-46e2-b986-2173957787d1
Irmady, Krithi
a3267628-c7ba-4ee3-a958-70a3e203245c
Lee, Francis S.
348e00da-6f6f-4922-b03a-87e5a382b273
Hempstead, Barbara L
2f25887e-3f59-4819-a8f1-f397f63b05da
Bracken, Clay
a06718f8-5204-4309-bbf4-704b51826ac5
Anastasia, Agustin
ed578679-72dc-4b72-b520-86f74a413e7a
Deinhardt, Katrin
5f4fe23b-2317-499f-ba6d-e639a4885dc1
Chao, Moses V.
823c00e2-9f32-4a7b-a2c4-76e7c1fbf83d
Will, Nathan E.
402ed9cf-a9a7-46e2-b986-2173957787d1
Irmady, Krithi
a3267628-c7ba-4ee3-a958-70a3e203245c
Lee, Francis S.
348e00da-6f6f-4922-b03a-87e5a382b273
Hempstead, Barbara L
2f25887e-3f59-4819-a8f1-f397f63b05da
Bracken, Clay
a06718f8-5204-4309-bbf4-704b51826ac5

Anastasia, Agustin, Deinhardt, Katrin, Chao, Moses V., Will, Nathan E., Irmady, Krithi, Lee, Francis S., Hempstead, Barbara L and Bracken, Clay (2013) Val66Met polymorphism of BDNF alters prodomain structure to induce neuronal growth cone retraction. Nature Communications, 4, 2490. (doi:10.1038/ncomms3490). (PMID:24048383)

Record type: Article

Abstract

A common single-nucleotide polymorphism (SNP) in the human brain-derived neurotrophic factor (BDNF) gene results in a Val66Met substitution in the BDNF prodomain region. This SNP is associated with alterations in memory and with enhanced risk to develop depression and anxiety disorders in humans. Here we show that the isolated BDNF prodomain is detected in the hippocampus and that it can be secreted from neurons in an activity-dependent manner. Using nuclear magnetic resonance spectroscopy and circular dichroism, we find that the prodomain is intrinsically disordered, and the Val66Met substitution induces structural changes. Surprisingly, application of Met66 (but not Val66) BDNF prodomain induces acute growth cone retraction and a decrease in Rac activity in hippocampal neurons. Expression of p75(NTR) and differential engagement of the Met66 prodomain to the SorCS2 receptor are required for this effect. These results identify the Met66 prodomain as a new active ligand, which modulates neuronal morphology.

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Published date: 18 September 2013
Organisations: Centre for Biological Sciences

Identifiers

Local EPrints ID: 357390
URI: http://eprints.soton.ac.uk/id/eprint/357390
PURE UUID: 647c1813-0d21-4345-813e-31c6f1f2e8dc
ORCID for Katrin Deinhardt: ORCID iD orcid.org/0000-0002-6473-5298

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Date deposited: 03 Oct 2013 10:54
Last modified: 15 Mar 2024 03:45

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Contributors

Author: Agustin Anastasia
Author: Moses V. Chao
Author: Nathan E. Will
Author: Krithi Irmady
Author: Francis S. Lee
Author: Barbara L Hempstead
Author: Clay Bracken

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