Literature DB >> 8521810

C-terminus determinants for Mg2+ and polyamine block of the inward rectifier K+ channel IRK1.

M Taglialatela1, E Ficker, B A Wible, A M Brown.   

Abstract

Critical loci for ion conduction in inward rectifier K+ channels are only now being discovered. The C-terminal region of IRK1 plays a crucial role in Mg2+i blockade and single-channel K+ conductance. A negatively charged aspartate in the putative second transmembrane domain (position 172) is essential for time-dependent block by the cytoplasmic polyamines spermine and spermidine. We have now localized the C-terminus effect in IRK1 to a single, negatively charged residue (E224). Mutation of E224 to G, Q and S drastically reduced rectification. Furthermore, the IRK1 E224G mutation decreased block by Mg2+i and spermidine and, like the E224Q mutation, caused a dramatic reduction in the apparent single-channel K+ conductance. The double mutation IRK1 D172N+ E224G was markedly insensitive to spermidine block, displaying an affinity similar to ROMK1. The results are compatible with a model in which the negatively charged residue at position 224, E224, is a major determinant of pore properties in IRK1. By means of a specific interaction with the negatively charged residue at position 172, D172, E224 contributes to the formation of the binding pocket for Mg2+ and polyamines, a characteristic of strong inward rectifiers.

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Year:  1995        PMID: 8521810      PMCID: PMC394667          DOI: 10.1002/j.1460-2075.1995.tb00240.x

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  23 in total

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4.  Primary structure and functional expression of a mouse inward rectifier potassium channel.

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Journal:  Nature       Date:  1994-09-15       Impact factor: 49.962

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  50 in total

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8.  The bundle crossing region is responsible for the inwardly rectifying internal spermine block of the Kir2.1 channel.

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9.  Separable effects of human Kvbeta1.2 N- and C-termini on inactivation and expression of human Kv1.4.

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10.  Mechanism of rectification in inward-rectifier K+ channels.

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