Inhibition of synaptic transmission and G protein modulation by synthetic CaV2.2 Ca2+ channel peptides

被引:16
|
作者
Bucci, Giovanna [1 ]
Mochida, Sumiko [2 ]
Stephens, Gary J. [1 ]
机构
[1] Univ Reading, Sch Pharm, Reading RG6 6AJ, Berks, England
[2] Tokyo Med Univ, Dept Physiol, Tokyo 1608402, Japan
来源
JOURNAL OF PHYSIOLOGY-LONDON | 2011年 / 589卷 / 13期
基金
英国惠康基金;
关键词
DEPENDENT CALCIUM-CHANNEL; G-BETA-GAMMA; N-TYPE CA(V)2.2; ALPHA-1; SUBUNITS; INTERACTION SITE; BINDING DOMAIN; AMINO-TERMINUS; KINASE-C; FACILITATION; IDENTIFICATION;
D O I
10.1113/jphysiol.2010.204735
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Modulation of presynaptic voltage-dependent Ca2+ channels is a major means of controlling neurotransmitter release. TheCa(V)2.2Ca(2+) channel subunit contains several inhibitory interaction sites for G beta gamma subunits, including the amino terminal (NT) and I-II loop. The NT and I-II loop have also been proposed to undergo a G protein-gated inhibitory interaction, whilst the NT itself has also been proposed to suppress Ca(V)2 channel activity. Here, we investigate the effects of an amino terminal (Ca(V)2.2[45-55]) ` NT peptide' and a I-II loop alpha interaction domain (Ca(V)2.2[377-393]) ` AID peptide' on synaptic transmission, Ca2+ channel activity and G protein modulation in superior cervical ganglion neurones (SCGNs). Presynaptic injection of NT or AID peptide into SCGN synapses inhibited synaptic transmission and also attenuated noradrenaline-induced G proteinmodulation. In isolated SCGNs, NT and AID peptides reduced whole-cell Ca2+ current amplitude, modified voltage dependence of Ca2+ channel activation and attenuated noradrenaline-induced G protein modulation. Co-application of NT and AID peptide negated inhibitory actions. Together, these data favour direct peptide interaction with presynaptic Ca2+ channels, with effects on current amplitude and gating representing likely mechanisms responsible for inhibition of synaptic transmission. Mutations to residues reported as determinants of Ca2+ channel function within the NT peptide negated inhibitory effects on synaptic transmission, Ca2+ current amplitude and gating andGprotein modulation. Amutation within the proposed QXXER motif for G protein modulation did not abolish inhibitory effects of the AID peptide. This study suggests that the Ca(V)2.2 amino terminal and I-II loop contribute molecular determinants forCa(2+) channel function; the data favour a direct interaction of peptides with Ca2+ channels to inhibit synaptic transmission and attenuate G protein modulation.
引用
收藏
页码:3085 / 3101
页数:17
相关论文
共 50 条
  • [21] Altered synaptic transmission at olfactory and vomeronasal nerve terminals in mice lacking N-type calcium channel Cav2.2
    Weiss, Jan
    Pyrski, Martina
    Weissgerber, Petra
    Zufall, Frank
    EUROPEAN JOURNAL OF NEUROSCIENCE, 2014, 40 (10) : 3422 - 3435
  • [22] Molecular moieties masking Ca2+-dependent facilitation of voltage-gated Cav2.2 Ca2+ channels
    Thomas, Jessica R.
    Hagen, Jussara
    Soh, Daniel
    Lee, Amy
    JOURNAL OF GENERAL PHYSIOLOGY, 2018, 150 (01): : 83 - 94
  • [23] Gating charges per channel of Cav2.2 channels are modified by G protein activation in rat sympathetic neurons
    Rebolledo-Antunez, Santiago
    Farias, Jose M.
    Arenas, Isabel
    Garcia, David E.
    ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2009, 486 (01) : 51 - 57
  • [24] Modulation of voltage-gated CaV2.2 Ca2+channels by newly identified interaction partners
    Lacinova, Lubica
    Mallmann, Robert Theodor
    Jurkovicova-Tarabova, Bohumila
    Klugbauer, Norbert
    CHANNELS, 2020, 14 (01) : 380 - 392
  • [25] Cav2.2 and Cav2,3 (N- and R-type) Ca2+ channels in depolarization-evoked entry of Ca2+ into mouse sperm
    Wennemuth, G
    Westenbroek, RE
    Xu, T
    Hille, B
    Babcock, DF
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (28) : 21210 - 21217
  • [26] Deletion of the Ca2+ Channel Subunit α2δ3 Differentially Affects Cav2.1 and Cav2.2 Currents in Cultured Spiral Ganglion Neurons Before and After the Onset of Hearing
    Stephani, Friederike
    Scheuer, Veronika
    Eckrich, Tobias
    Blum, Kerstin
    Wang, Wenying
    Obermair, Gerald J.
    Engel, Jutta
    FRONTIERS IN CELLULAR NEUROSCIENCE, 2019, 13
  • [27] Cholinergic control of firing pattern and neurotransmission in rat neostriatal projection neurons:: Role of CaV2.1 and CaV2.2 Ca2+ channels
    Perez-Rosello, T
    Figueroa, A
    Salgado, H
    Vilchis, C
    Tecuapetla, F
    Guzman, JN
    Galarraga, E
    Bargas, J
    JOURNAL OF NEUROPHYSIOLOGY, 2005, 93 (05) : 2507 - 2519
  • [28] Deletion of the synaptic protein interaction site of the N-type (Cav2.2) calcium channel inhibits secretion in mouse pheochromocytoma cells
    Harkins, AB
    Cahill, AL
    Powers, JF
    Tischler, AS
    Fox, AP
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (42) : 15219 - 15224
  • [29] 14-3-3τ Promotes Surface Expression of Cav2.2 (α1B) Ca2+ Channels
    Liu, Feng
    Zhou, Qin
    Zhou, Jie
    Sun, Hao
    Wang, Yan
    Zou, Xiuqun
    Feng, Lingling
    Hou, Zhaoyuan
    Zhou, Aiwu
    Zhou, Yi
    Li, Yong
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2015, 290 (05) : 2689 - 2698
  • [30] Identification and characterization of novel human Cav2.2 (α1B) calcium channel variants lacking the synaptic protein interaction site
    Kaneko, S
    Cooper, CB
    Nishioka, N
    Yamasaki, H
    Suzuki, A
    Jarvis, SE
    Akaike, A
    Satoh, M
    Zamponi, GW
    JOURNAL OF NEUROSCIENCE, 2002, 22 (01): : 82 - 92