Zn2+-binding and molecular determinants of tetramerization in voltage-gated K+ channels
The N-terminal, cytoplasmic tetramerization domain (T1) of voltage-gated K + channels encodes molecular determinants for subfamily-specific assembly of α-subunits into functional tetrameric channels. Crystal structures of T1 tetramers from Shaw and Shaker subfamilies reveal a common four-layered sca...
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Veröffentlicht in: | Nature Structural Biology 1999, Vol.6 (1), p.38-43 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The N-terminal, cytoplasmic tetramerization domain (T1) of voltage-gated K
+
channels encodes molecular determinants for subfamily-specific assembly of α-subunits into functional tetrameric channels. Crystal structures of T1 tetramers from
Shaw
and
Shaker
subfamilies reveal a common four-layered scaffolding. Within layer 4, on the hypothetical membrane-facing side of the tetramer, the
Shaw
T1 tetramer contains four zinc ions; each is coordinated by a histidine and two cysteines from one monomer and by one cysteine from an adjacent monomer. The amino acids involved in coordinating the Zn
2+
ion occur in a HX
5
CX
20
CC sequence motif that is highly conserved among all
Shab, Shaw
and
Shal
subfamily members, but is not found in
Shaker
subfamily members. We demonstrate by coimmunoprecipitation that a few characteristic residues in the subunit interface are crucial for subfamily-specific tetramerization of the T1 domains. |
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ISSN: | 1072-8368 1545-9985 |
DOI: | 10.1038/4911 |