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Haeseleer, F., Imanishi, Y., Maeda, T., Possin, D. E., Maeda, A., Lee, A., Rieke, F., & Palczewski, K. (2004). Essential role of Ca2+-binding protein 4, a Cav1.4 channel regulator, in photoreceptor synaptic function. Nature Neuroscience, 7(10), 1079–1087.

Authors 8
  1. Françoise Haeseleer (first)
  2. Yoshikazu Imanishi (additional)
  3. Tadao Maeda (additional)
  4. Daniel E Possin (additional)
  5. Akiko Maeda (additional)
  6. Amy Lee (additional)
  7. Fred Rieke (additional)
  8. Krzysztof Palczewski (additional)
References 50 Referenced 225
  1. Zhang, N. & Townes-Anderson, E. Regulation of structural plasticity by different channel types in rod and cone photoreceptors. J. Neurosci. 22, 7065–7079 (2002). (10.1523/JNEUROSCI.22-16-07065.2002) / J. Neurosci. by N Zhang (2002)
  2. Nachman-Clewner, M., St Jules, R. & Townes-Anderson, E. L-type calcium channels in the photoreceptor ribbon synapse: localization and role in plasticity. J. Comp. Neurol. 415, 1–16 (1999). (10.1002/(SICI)1096-9861(19991206)415:1<1::AID-CNE1>3.0.CO;2-G) / J. Comp. Neurol. by M Nachman-Clewner (1999)
  3. Schmitz, F., Konigstorfer, A. & Sudhof, T.C. RIBEYE, a component of synaptic ribbons: a protein's journey through evolution provides insight into synaptic ribbon function. Neuron 28, 857–872 (2000). (10.1016/S0896-6273(00)00159-8) / Neuron by F Schmitz (2000)
  4. Schmitz, Y. & Witkovsky, P. Dependence of photoreceptor glutamate release on a dihydropyridine-sensitive calcium channel. Neuroscience 78, 1209–1216 (1997). (10.1016/S0306-4522(96)00678-1) / Neuroscience by Y Schmitz (1997)
  5. Barnes, S. & Kelly, M.E.M. Calcium channels at the photoreceptor synapse. in. Photorecept. Calcium 514, 465–476 (2002). / Calcium by S Barnes (2002)
  6. Morgans, C.W. Localization of the α1F calcium channel subunit in the rat retina. Invest. Ophthalmol. Vis. Sci. 42, 2414–2418 (2001). / Invest. Ophthalmol. Vis. Sci. by CW Morgans (2001)
  7. McRory, J.E. et al. The CACNA1F gene encodes an L-type calcium channel with unique biophysical properties and tissue distribution. J. Neurosci. 24, 1707–1718 (2004). (10.1523/JNEUROSCI.4846-03.2004) / J. Neurosci. by JE McRory (2004)
  8. Baumann, L., Gerstner, A., Zong, X., Biel, M. & Wahl-Schott, C. Functional characterization of the L-type Ca2+ channel Cav1.4α1 from mouse retina. Invest. Ophthalmol. Vis. Sci. 45, 708–713 (2004). (10.1167/iovs.03-0937) / Invest. Ophthalmol. Vis. Sci. by L Baumann (2004)
  9. Koschak, A. et al. Cav1.4α1 subunits can form slowly inactivating dihydropyridine-sensitive L-type Ca2+ channels lacking Ca2+-dependent inactivation. J. Neurosci. 23, 6041–6049 (2003). (10.1523/JNEUROSCI.23-14-06041.2003) / J. Neurosci. by A Koschak (2003)
  10. Rieke, F. & Schwartz, E.A. A cGMP-gated current can control exocytosis at cone synapses. Neuron 13, 863–873 (1994). (10.1016/0896-6273(94)90252-6) / Neuron by F Rieke (1994)
  11. Bech-Hansen, N.T. et al. Mutations in NYX, encoding the leucine-rich proteoglycan nyctalopin, cause X-linked complete congenital stationary night blindness. Nat. Genet. 26, 319–323 (2000). (10.1038/81619) / Nat. Genet. by NT Bech-Hansen (2000)
  12. Strom, T.M. et al. An L-type calcium-channel gene mutated in incomplete X-linked congenital stationary night blindness. Nat. Genet. 19, 260–263 (1998). (10.1038/940) / Nat. Genet. by TM Strom (1998)
  13. Ball, S.L. et al. Role of the β2 subunit of voltage-dependent calcium channels in the retinal outer plexiform layer. Invest. Ophthalmol. Vis. Sci. 43, 1595–1603 (2002). / Invest. Ophthalmol. Vis. Sci. by SL Ball (2002)
  14. Haeseleer, F. et al. Five members of a novel Ca2+-binding protein (CABP) subfamily with similarity to calmodulin. J. Biol. Chem. 275, 1247–1260 (2000). (10.1074/jbc.275.2.1247) / J. Biol. Chem. by F Haeseleer (2000)
  15. Lee, A. et al. Differential modulation of Cav2.1 channels by calmodulin and Ca2+-binding protein 1. Nat. Neurosci. 5, 210–217 (2002). (10.1038/nn805) / Nat. Neurosci. by A Lee (2002)
  16. Yang, J. et al. Identification of a family of calcium sensors as protein ligands of inositol trisphosphate receptor Ca2+ release channels. Proc. Natl Acad. Sci. USA 99, 7711–7716 (2002). (10.1073/pnas.102006299) / Proc. Natl Acad. Sci. USA by J Yang (2002)
  17. Haynes, L.P., Tepikin, A.V. & Burgoyne, R.D. Calcium-binding protein 1 is an inhibitor of agonist-evoked, inositol 1,4,5-trisphosphate-mediated calcium signaling. J. Biol. Chem. 279, 547–555 (2004). (10.1074/jbc.M309617200) / J. Biol. Chem. by LP Haynes (2004)
  18. Koulen, P., Fletcher, E.L., Craven, S.E., Bredt, D.S. & Wassle, H. Immunocytochemical localization of the postsynaptic density protein PSD-95 in the mammalian retina. J. Neurosci. 18, 10136–10149 (1998). (10.1523/JNEUROSCI.18-23-10136.1998) / J. Neurosci. by P Koulen (1998)
  19. Van Hooser, J.P. et al. Rapid restoration of visual pigment and function with oral retinoid in a mouse model of childhood blindness. Proc. Natl Acad. Sci. USA 97, 8623–8628 (2000). (10.1073/pnas.150236297) / Proc. Natl Acad. Sci. USA by JP Van Hooser (2000)
  20. Grunert, U., Haverkamp, S., Fletcher, E.L. & Wassle, H. Synaptic distribution of ionotropic glutamate receptors in the inner plexiform layer of the primate retina. J. Comp. Neurol. 447, 138–151 (2002). (10.1002/cne.10220) / J. Comp. Neurol. by U Grunert (2002)
  21. Nomura, A. et al. Developmentally regulated postsynaptic localization of a metabotropic glutamate receptor in rat rod bipolar cells. Cell 77, 361–369 (1994). (10.1016/0092-8674(94)90151-1) / Cell by A Nomura (1994)
  22. Dick, O. et al. The presynaptic active zone protein bassoon is essential for photoreceptor ribbon synapse formation in the retina. Neuron 37, 775–786 (2003). (10.1016/S0896-6273(03)00086-2) / Neuron by O Dick (2003)
  23. Baylor, D.A., Lamb, T.D. & Yau, K.W. Responses of retinal rods to single photons. J. Physiol. (Lond.) 288, 613–634 (1979). (10.1113/jphysiol.1979.sp012716) / J. Physiol. (Lond.) by DA Baylor (1979)
  24. Nakatani, K. & Yau, K.W. Calcium and magnesium fluxes across the plasma membrane of the toad rod outer segment. J. Physiol. (Lond.) 395, 695–729 (1988). (10.1113/jphysiol.1988.sp016942) / J. Physiol. (Lond.) by K Nakatani (1988)
  25. Field, G.D. & Rieke, F. Nonlinear signal transfer from mouse rods to bipolar cells and implications for visual sensitivity. Neuron 34, 773–785 (2002). (10.1016/S0896-6273(02)00700-6) / Neuron by GD Field (2002)
  26. Slaughter, M.M. & Miller, R.F. 2-amino-4-phosphonobutyric acid: a new pharmacological tool for retina research. Science 211, 182–185 (1981). (10.1126/science.6255566) / Science by MM Slaughter (1981)
  27. Sampath, A.P. & Rieke, F. Selective transmission of single photon responses by saturation at the rod-to-rod bipolar synapse. Neuron 41, 431–443 (2004). (10.1016/S0896-6273(04)00005-4) / Neuron by AP Sampath (2004)
  28. Pitt, G.S. et al. Molecular basis of calmodulin tethering and Ca2+-dependent inactivation of L-type Ca2+ channels. J. Biol. Chem. 276, 30794–30802 (2001). (10.1074/jbc.M104959200) / J. Biol. Chem. by GS Pitt (2001)
  29. Erickson, M.G., Alseikhan, B.A., Peterson, B.Z. & Yue, D.T. Preassociation of calmodulin with voltage-gated Ca2+ channels revealed by FRET in single living cells. Neuron 31, 973–985 (2001). (10.1016/S0896-6273(01)00438-X) / Neuron by MG Erickson (2001)
  30. Zuhlke, R.D., Pitt, G.S., Deisseroth, K., Tsien, R.W. & Reuter, H. Calmodulin supports both inactivation and facilitation of L-type calcium channels. Nature 399, 159–162 (1999). (10.1038/20200) / Nature by RD Zuhlke (1999)
  31. Zhou, H. et al. Ca2+-binding protein-1 facilitates and forms a postsynaptic complex with Cav1.2 (L-type) Ca2+ channels. J. Neurosci. 24, 4698–4708 (2004). (10.1523/JNEUROSCI.5523-03.2004) / J. Neurosci. by H Zhou (2004)
  32. Baylor, D.A. & Fuortes, M.G. Electrical responses of single cones in the retina of the turtle. J. Physiol. (Lond.) 207, 77–92 (1970). (10.1113/jphysiol.1970.sp009049) / J. Physiol. (Lond.) by DA Baylor (1970)
  33. Pate, P. et al. Determinants for calmodulin binding on voltage-dependent Ca2+ channels. J. Biol. Chem. 275, 39786–39792 (2000). (10.1074/jbc.M007158200) / J. Biol. Chem. by P Pate (2000)
  34. Peterson, B.Z., DeMaria, C.D. & Yue, D.T. Calmodulin is the Ca2+ sensor for Ca2+-dependent inactivation of 1-type calcium channels. Neuron 22, 549–558 (1999). (10.1016/S0896-6273(00)80709-6) / Neuron by BZ Peterson (1999)
  35. Seidenbecher, C.I., Reissner, C. & Kreutz, M.R. Caldendrins in the inner retina. in. Photorecept. Calcium 514, 451–463 (2002). (10.1007/978-1-4615-0121-3_27) / Photorecept. Calcium by CI Seidenbecher (2002)
  36. Dolmetsch, R. Excitation-transcription coupling: signaling by ion channels to the nucleus. Sci. STKE 2003, PE4 (2003). (10.1126/stke.2003.166.pe4) / Sci. STKE by R Dolmetsch (2003)
  37. Deisseroth, K., Heist, E.K. & Tsien, R.W. Translocation of calmodulin to the nucleus supports CREB phosphorylation in hippocampal neurons. Nature 392, 198–202 (1998). (10.1038/32448) / Nature by K Deisseroth (1998)
  38. Bading, H., Ginty, D.D. & Greenberg, M.E. Regulation of gene expression in hippocampal neurons by distinct calcium signaling pathways. Science 260, 181–186 (1993). (10.1126/science.8097060) / Science by H Bading (1993)
  39. Mao, Z.X., Bonni, A., Xia, F., Nadal-Vicens, M. & Greenberg, M.E. Neuronal activity-dependent cell survival mediated by transcription factor MEF2. Science 286, 785–790 (1999). (10.1126/science.286.5440.785) / Science by ZX Mao (1999)
  40. Morgans, C.W., El Far, O., Berntson, A., Wassle, H. & Taylor, W.R. Calcium extrusion from mammalian photoreceptor terminals. J. Neurosci. 18, 2467–2474 (1998). (10.1523/JNEUROSCI.18-07-02467.1998) / J. Neurosci. by CW Morgans (1998)
  41. Morgans, C.W. Calcium channel heterogeneity among cone photoreceptors in the tree shrew retina. Eur. J. Neurosci. 11, 2989–2993 (1999). (10.1046/j.1460-9568.1999.00719.x) / Eur. J. Neurosci. by CW Morgans (1999)
  42. Berntson, A., Taylor, W.R. & Morgans, C.W. Molecular identity, synaptic localization, and physiology o0f calcium channels in retinal bipolar cells. J. Neurosci. Res. 71, 146–151 (2003). (10.1002/jnr.10459) / J. Neurosci. Res. by A Berntson (2003)
  43. Bech-Hansen, N.T. et al. Loss-of-function mutations in a calcium-channel α1-subunit gene in Xp11.23 cause incomplete X-linked congenital stationary night blindness. Nat. Genet. 19, 264–267 (1998). (10.1038/947) / Nat. Genet. by NT Bech-Hansen (1998)
  44. Haeseleer, F., Imanishi, Y., Saperstein, D.A. & Palczewski, K. Gene transfer mediated by recombinant baculovirus into mouse eye. Invest. Ophthalmol. Vis. Sci. 42, 3294–3300 (2001). / Invest. Ophthalmol. Vis. Sci. by F Haeseleer (2001)
  45. Ellis, S.B. et al. Sequence and expression of messenger RNAs encoding the α1-subunit and α2-subunit of a Dhp-sensitive calcium channel. Science 241, 1661–1664 (1988). (10.1126/science.2458626) / Science by SB Ellis (1988)
  46. Perezreyes, E. et al. Cloning and expression of a cardiac brain β-subunit of the L-type calcium channel. J. Biol. Chem. 267, 1792–1797 (1992). (10.1016/S0021-9258(18)46015-2) / J. Biol. Chem. by E Perezreyes (1992)
  47. Haeseleer, F. et al. Molecular characterization of a third member of the guanylyl cyclase–activating protein subfamily. J. Biol. Chem. 274, 6526–6535 (1999). (10.1074/jbc.274.10.6526) / J. Biol. Chem. by F Haeseleer (1999)
  48. Imanishi, Y. et al. Characterization of retinal guanylate cyclase–activating protein 3 (GCAP3) from zebrafish to man. Eur. J. Neurosci. 15, 63–78 (2002). (10.1046/j.0953-816x.2001.01835.x) / Eur. J. Neurosci. by Y Imanishi (2002)
  49. Batten, M.L. et al. Lecithin-retinol acyltransferase is essential for accumulation of all-trans-retinyl esters in the eye and in the liver. J. Biol. Chem. 279, 10422–10432 (2004). (10.1074/jbc.M312410200) / J. Biol. Chem. by ML Batten (2004)
  50. Maeda, T. et al. Evaluation of the role of the retinal G protein–coupled receptor (RGR) in the vertebrate retina in vivo. J. Neurochem. 85, 944–956 (2003). (10.1046/j.1471-4159.2003.01741.x) / J. Neurochem. by T Maeda (2003)
Dates
Type When
Created 20 years, 11 months ago (Sept. 27, 2004, 10:12 a.m.)
Deposited 2 years, 3 months ago (May 18, 2023, 7:53 p.m.)
Indexed 2 months, 4 weeks ago (June 3, 2025, 2:23 p.m.)
Issued 20 years, 11 months ago (Sept. 26, 2004)
Published 20 years, 11 months ago (Sept. 26, 2004)
Published Online 20 years, 11 months ago (Sept. 26, 2004)
Published Print 20 years, 11 months ago (Oct. 1, 2004)
Funders 0

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@article{Haeseleer_2004, title={Essential role of Ca2+-binding protein 4, a Cav1.4 channel regulator, in photoreceptor synaptic function}, volume={7}, ISSN={1546-1726}, url={http://dx.doi.org/10.1038/nn1320}, DOI={10.1038/nn1320}, number={10}, journal={Nature Neuroscience}, publisher={Springer Science and Business Media LLC}, author={Haeseleer, Françoise and Imanishi, Yoshikazu and Maeda, Tadao and Possin, Daniel E and Maeda, Akiko and Lee, Amy and Rieke, Fred and Palczewski, Krzysztof}, year={2004}, month=sep, pages={1079–1087} }