Published May 16, 2022 | Version v1
Dataset Open

Data from: Retinoic acid-induced protein 14 controls dendritic spine dynamics associated with depressive-like behaviors

Description

Dendritic spines are the central postsynaptic machinery that determines synaptic function. The F-actin within dendritic spines regulates their dynamic formation and elimination. Rai14 is an F‑actin-regulating protein with a membrane‑shaping function. Here, we identified the roles of Rai14 for the regulation of dendritic spine dynamics associated with stress-induced depressive-like behaviors. Rai14-deficient neurons failed to maintain a proper dendritic spine density in the Rai14+/- mouse brain, resulting in impaired functional synaptic activity. Rai14 was protected from degradation by complex formation with Tara, and accumulated in the dendritic spine neck, thereby enhancing spine maintenance. Concurrently, Rai14 deficiency in mice altered gene expression profile relevant to depressive conditions and increased depressive-like behaviors. Moreover, Rai14 expression was reduced in the prefrontal cortex of the mouse stress model, which was blocked by antidepressant treatment. Thus, we propose that Rai14-dependent regulation of dendritic spines may underlie the plastic changes of neuronal connections relevant to depressive-like behaviors.

Notes

Funding provided by: National Research Foundation of Korea
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100003725
Award Number: NRF-2021R1A2C3010639

Funding provided by: National Research Foundation of Korea
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100003725
Award Number: NRF-2020M3E5E2039894

Funding provided by: National Research Foundation of Korea
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100003725
Award Number: NRF-2017R1A5A1015366

Funding provided by: Ministry of Science and ICT, South Korea
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100014188
Award Number: 21-BR-03-01

Funding provided by: Ministry of Education
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100002701
Award Number: 2020R1A6A3A01096024

Files

README.txt

Files (32.8 GB)

Name Size Download all
md5:adac3bb054c8263c3a74a6e84231154e
2.0 GB Download
md5:2140b2ee027cab5708903ee658d5bc98
2.0 GB Download
md5:64428e2cb494782c8c1dffb2215f29ce
2.3 GB Download
md5:4eba4ad1de9e615ba1ebd3ce257d4756
2.4 GB Download
md5:8c248e6e95cdd89d0a074996d3a165c5
2.2 GB Download
md5:88b48978f412a4205f5e28ce85fb5c23
2.2 GB Download
md5:488a977e27008ba3bbf5060e2ed57247
1.7 GB Download
md5:d8075acf11ecd0e400d63207f8e23a5b
1.7 GB Download
md5:5ae78818c0e838f7d144935aa7c5aa83
6.9 kB Preview Download
md5:235c651dbab7df96f8ec3b1c132ce055
2.1 GB Download
md5:a54679291f6c35ecad60835de82b4445
2.1 GB Download
md5:376e4a600ab36c40ba5191f114aec943
2.2 GB Download
md5:418cb9ba6ac7b5ce6774bc6f1afbd558
2.2 GB Download
md5:f3624f6f790a49030b7a646c68544fc0
2.1 GB Download
md5:cc10ec384d7a40c956c2def044baaf61
2.1 GB Download
md5:c6c960266a122fbbddadb1921bcaa2b2
1.7 GB Download
md5:a78ce56d9b4e1a49c4a120a9e12c05ee
1.7 GB Download