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- Molecular Biophysics
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Keyword
- AmP2X1
- channel gating1
- chicken (Gallus gallus domesticus) P2X71
- ckP2X71
- electrophysiology1
- giant panda (Ailuropoda melanoleuca) P2X71
- gulf coast tick (Amblyomma maculatum) P2X1
- HEK2931
- hP2X31
- human (Homo sapiens) P2X31
- human embryonic kidney 2931
- ion channel1
- MD1
- molecular dynamics1
- PDB1
- pdP2X71
- Protein Data Bank1
- purinergic receptor1
- rat (Rattus norvegicus) P2X71
- relationship between sequence, structure, and function1
- rP2X71
- RSSF1
- side-chain orientation1
- structure-function1
- zebrafish (Danio rerio) P2X41
Molecular Biophysics
1 Results
- Research ArticleOpen Access
A conserved residue in the P2X4 receptor has a nonconserved function in ATP recognition
Journal of Biological ChemistryVol. 296100655Published online: April 22, 2021- Ping-Fang Chen
- Xue-Fei Ma
- Liang-Fei Sun
- Yun Tian
- Ying-Zhe Fan
- Peiwang Li
- and others
Cited in Scopus: 1Highly conserved amino acids are generally anticipated to have similar functions across a protein superfamily, including that of the P2X ion channels, which are gated by extracellular ATP. However, whether and how these functions are conserved becomes less clear when neighboring amino acids are not conserved. Here, we investigate one such case, focused on the highly conserved residue from P2X4, E118 (rat P2X4 numbering, rP2X4), a P2X subtype associated with human neuropathic pain. When we compared the crystal structures of P2X4 with those of other P2X subtypes, including P2X3, P2X7, and AmP2X, we observed a slightly altered side-chain orientation of E118.