Home LiteratureArticle Details
PMID: 9372155 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Reduced transmitter release conferred by mutations in the slowpoke-encoded Ca2(+)-activated K+ channel gene of Drosophila.

Invertebrate neuroscience : IN ·Vol. 2 ·No. 1 ·1996-06-00 ·Pages 51-60

Warbington L, Hillman T, Adams C, Stern M

Abstract

Potassium channels control the repolarization of nerve terminals and thus play important roles in the control of synaptic transmission. Here we describe the effects of mutations in the slowpoke gene, which is the structural gene for a calcium activated potassium channel, on transmitter release at the neuromuscular junction in Drosophila melanogaster. Surprisingly, we find that the slowpoke mutant exhibits reduced transmitter release compared to normal. Similarly, the slowpoke mutation significantly suppresses the increased transmitter release conferred either by a mutation in Shaker or by application of 4-aminopyridine, which blocks the Shaker-encoded potassium channel at the Drosophila nerve terminal. Furthermore, the slowpoke mutation suppresses the striking increase in transmitter release that occurs following application of 4-aminopyridine to the ether a go-go mutant. This suppression is most likely the result of a reduction of Ca2+ influx into the nerve terminal in the slowpoke mutant. We hypothesize that the effects of the slowpoke mutation are indirect, perhaps resulting from increased Ca2+ channel inactivation, decreased Na+ or Ca2+ channel localization or gene expression, or by increases in the expression or activity of potassium channels distinct from slowpoke.

MeSH Terms
4-Aminopyridine/pharmacology Animals Calcium/metabolism,physiology Drosophila Proteins Drosophila melanogaster/genetics Electrophysiology Ether-A-Go-Go Potassium Channels Female Genes, Insect/genetics Large-Conductance Calcium-Activated Potassium Channels Male Mutation/physiology Neurotransmitter Agents/metabolism Osmolar Concentration Potassium Channels/genetics Potassium Channels, Calcium-Activated Shaker Superfamily of Potassium Channels Synaptic Transmission/physiology
Chemicals
Drosophila Proteins Ether-A-Go-Go Potassium Channels Large-Conductance Calcium-Activated Potassium Channels Neurotransmitter Agents Potassium Channels Potassium Channels, Calcium-Activated Sh protein, Drosophila Shaker Superfamily of Potassium Channels eag protein, Drosophila slo protein, Drosophila 4-Aminopyridine Calcium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Warbington L
Department of Biochemistry and Cell Biology, Rice University, Houston, TX 77251, USA.
Hillman T
Adams C
Stern M
References (29)
29 references, click to expand
  1. Properties of potassium currents and their role in membrane excitability in Drosophila larval muscle fibers.
    J Exp Biol. 1990 Sep;152:59-76 PMID: 2121887
  2. Two mutations of synaptic transmission in Drosophila.
    Proc R Soc Lond B Biol Sci. 1977 Jul 28;198(1130):87-108 PMID: 20636
  3. Neurogenetic analysis of potassium currents in Drosophila: synergistic effects on neuromuscular transmission in double mutants.
    J Neurogenet. 1983 Sep;1(1):17-28 PMID: 6100303
  4. Dosage effects of a Drosophila sodium channel gene on behavior and axonal excitability.
    Genetics. 1990 Jan;124(1):133-43 PMID: 2155153
  5. Properties of the larval neuromuscular junction in Drosophila melanogaster.
    J Physiol. 1976 Oct;262(1):189-214 PMID: 11339
  6. Drosophila mutants with opposing effects on nerve excitability: genetic and spatial interactions in repetitive firing.
    J Neurophysiol. 1982 Mar;47(3):501-14 PMID: 6279790
  7. Morphological plasticity of motor axons in Drosophila mutants with altered excitability.
    J Neurosci. 1990 Nov;10(11):3754-68 PMID: 1700086
  8. Altered synaptic transmission in Drosophila hyperkinetic mutants.
    J Neurogenet. 1989 Aug;5(4):215-28 PMID: 2553904
  9. A component of calcium-activated potassium channels encoded by the Drosophila slo locus.
    Science. 1991 Aug 2;253(5019):551-5 PMID: 1857984
  10. Calcium-activated potassium channels expressed from cloned complementary DNAs.
    Neuron. 1992 Aug;9(2):209-16 PMID: 1497890
  11. Alteration of four identified K+ currents in Drosophila muscle by mutations in eag.
    Science. 1991 Jun 14;252(5012):1562-4 PMID: 2047864
  12. A Drosophila mutant with a temperature-sensitive block in nerve conduction.
    Proc Natl Acad Sci U S A. 1978 Aug;75(8):4047-51 PMID: 211514
  13. The behavior of four neurological mutants of Drosophila.
    Genetics. 1969 Feb;61(2):399-409 PMID: 5807804
  14. Calcium action in synaptic transmitter release.
    Annu Rev Neurosci. 1987;10:633-93 PMID: 2436546
  15. Genetic modifications of voltage-sensitive sodium channels in Drosophila: gene dosage studies of the seizure locus.
    J Neurosci. 1985 May;5(5):1144-51 PMID: 2582101
  16. A distinct potassium channel polypeptide encoded by the Drosophila eag locus.
    Science. 1991 Jun 14;252(5012):1560-2 PMID: 1840699
  17. Analysis of repolarization of presynaptic motor terminals in Drosophila larvae using potassium-channel-blocking drugs and mutations.
    J Exp Biol. 1992 Sep;170:93-111 PMID: 1328458
  18. Improved stability of Drosophila larval neuromuscular preparations in haemolymph-like physiological solutions.
    J Comp Physiol A. 1994 Aug;175(2):179-91 PMID: 8071894
  19. A study of synaptic transmission in the absence of nerve impulses.
    J Physiol. 1967 Sep;192(2):407-36 PMID: 4383089
  20. A Drosophila mutation that eliminates a calcium-dependent potassium current.
    Proc Natl Acad Sci U S A. 1986 Nov;83(21):8415-9 PMID: 2430288
  21. Functional colocalization of calcium and calcium-gated potassium channels in control of transmitter release.
    Neuron. 1993 Oct;11(4):645-55 PMID: 7691106
  22. Multiple potassium-channel components are produced by alternative splicing at the Shaker locus in Drosophila.
    Nature. 1988 Jan 14;331(6152):137-42 PMID: 2448635
  23. Altered synaptic plasticity in Drosophila memory mutants with a defective cyclic AMP cascade.
    Science. 1991 Jan 11;251(4990):198-201 PMID: 1670967
  24. Presynaptic spike broadening reduces junctional potential amplitude.
    Nature. 1989 Aug 24;340(6235):636-8 PMID: 2475781
  25. Calcium dependence of neurotransmitter release and rate of spontaneous vesicle fusions are altered in Drosophila synaptotagmin mutants.
    Proc Natl Acad Sci U S A. 1994 Nov 8;91(23):10888-92 PMID: 7971978
  26. Expression of ion channels and mutational effects in giant Drosophila neurons differentiated from cell division-arrested embryonic neuroblasts.
    J Neurosci. 1991 Jul;11(7):2135-50 PMID: 1712379
  27. Clustering of Ca2+ channels and Ca(2+)-activated K+ channels at fluorescently labeled presynaptic active zones of hair cells.
    Proc Natl Acad Sci U S A. 1994 Aug 2;91(16):7578-82 PMID: 8052623
  28. Modulation of different K+ currents in Drosophila: a hypothetical role for the Eag subunit in multimeric K+ channels.
    J Neurosci. 1993 Nov;13(11):4669-79 PMID: 8229192
  29. The roles of potassium currents in Drosophila flight muscles.
    J Neurosci. 1988 Feb;8(2):428-34 PMID: 3339425
Article Info
Journal
Invertebrate neuroscience : IN
Abbr.
Invert Neurosci
ISSN
1354-2516
Published
1996-06-00
Pages
51-60
Language
English
Region
Germany
NLM ID
9602489
Subset
IM
Grants
NIGMS NIH HHS · GM46566 · United States
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com