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Backbone resonance assignments of the CPEB3 101–200 and CPEB3 294–410
by
Ueno, Motoharu
, Saito, Harunobu
, Sugase, Kenji
, Sekiyama, Naotaka
, Furukawa, Ayako
, Lee, Yujin
, So, Masatomo
in
Biochemistry
/ Biological and Medical Physics
/ Biophysics
/ Humans
/ Laboratories
/ Long term memory
/ Nuclear Magnetic Resonance, Biomolecular
/ Physics
/ Physics and Astronomy
/ Polyadenylation
/ Polymer Sciences
/ Protein expression
/ Proteins
/ RNA-binding protein
/ RNA-Binding Proteins - chemistry
2025
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Backbone resonance assignments of the CPEB3 101–200 and CPEB3 294–410
by
Ueno, Motoharu
, Saito, Harunobu
, Sugase, Kenji
, Sekiyama, Naotaka
, Furukawa, Ayako
, Lee, Yujin
, So, Masatomo
in
Biochemistry
/ Biological and Medical Physics
/ Biophysics
/ Humans
/ Laboratories
/ Long term memory
/ Nuclear Magnetic Resonance, Biomolecular
/ Physics
/ Physics and Astronomy
/ Polyadenylation
/ Polymer Sciences
/ Protein expression
/ Proteins
/ RNA-binding protein
/ RNA-Binding Proteins - chemistry
2025
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Backbone resonance assignments of the CPEB3 101–200 and CPEB3 294–410
by
Ueno, Motoharu
, Saito, Harunobu
, Sugase, Kenji
, Sekiyama, Naotaka
, Furukawa, Ayako
, Lee, Yujin
, So, Masatomo
in
Biochemistry
/ Biological and Medical Physics
/ Biophysics
/ Humans
/ Laboratories
/ Long term memory
/ Nuclear Magnetic Resonance, Biomolecular
/ Physics
/ Physics and Astronomy
/ Polyadenylation
/ Polymer Sciences
/ Protein expression
/ Proteins
/ RNA-binding protein
/ RNA-Binding Proteins - chemistry
2025
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Backbone resonance assignments of the CPEB3 101–200 and CPEB3 294–410
Journal Article
Backbone resonance assignments of the CPEB3 101–200 and CPEB3 294–410
2025
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Overview
Cytoplasmic polyadenylation element-binding protein 3 (CPEB3) is an RNA-binding protein that plays a pivotal role in the formation of long-term memory. The N-terminal region (residues 1–459) of CPEB3 is a highly aggregative intrinsically disordered region (IDR) that regulates the translation of specific targets, such as AMPA subunits, through mechanisms including liquid-liquid phase separation (LLPS) and the formation of fibrous aggregates. Despite its significance, the underlying mechanisms remain poorly understood. In this study, we present the backbone resonance assignments of residues 101–200 and 294–410 segments of the CPEB3 IDR. In agreement with sequence-based predictions, CPEB3 [101–200] was found to be disordered, whereas two partial α-helices were identified within CPEB3 [294–410].
Publisher
Springer Netherlands,Springer Nature B.V
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