Literature DB >> 23948741

Isoform- and receptor-specific channel property of canonical transient receptor potential (TRPC)1/4 channels.

Jinsung Kim1, Misun Kwak, Jae-Pyo Jeon, Jongyun Myeong, Jinhong Wie, Chansik Hong, Sung-Young Kim, Ju-Hong Jeon, Hyun Jin Kim, Insuk So.   

Abstract

Transient receptor potential canonical (TRPC) 1, the first mammalian homologue of Drosophila trp gene, is distributed widely in mammalian cells and is involved in many physiological functions. TRPC1 is reported to be functional following heteromeric formation with other TRPC channels such as TRPC4 or TRPC5. It is known that the composition of this widely distributed TRPC1 is far from simple; functionality of such channels has been highly controversial. Furthermore, TRPC1 gene is known to have two splicing variants; one encodes long (TRPC1α) and the other encodes short (TRPC1β) TRPC1 isoforms, respectively. In this study, we examined the functionality of TRPC1/4 channels using various activation systems. Gq/11-coupled receptor (e.g., M1 or M3 receptors) stimulation significantly increased TRPC1α/4 currents but induced mild activation of TRPC1β/4. In addition, when expressed with TRPC4, TRPC1α acted as a pore-constituting subunit and not a β ancillary subunit. Multimerized with TRPC4, TRPC1α also generated strong pore field strength. We also found that Gi/o-coupled receptor (e.g., M2 receptor) stimulation was insufficient to activate TRPC1α/4 and TRPC1β/4 channels but selectively activated TRPC4 homomeric channels. These findings demonstrate that TRPC1/4 channel shows dynamic gating property depending on TRPC1 isoform subtypes and receptor stimulation system. Therefore, careful discrimination of the specificity of TRPC1 isoforms and upstream activation system is important in thorough understanding of TRPC1 and TRPC1/4 channels.

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Year:  2013        PMID: 23948741     DOI: 10.1007/s00424-013-1332-y

Source DB:  PubMed          Journal:  Pflugers Arch        ISSN: 0031-6768            Impact factor:   3.657


  44 in total

1.  Trp1, a candidate protein for the store-operated Ca(2+) influx mechanism in salivary gland cells.

Authors:  X Liu; W Wang; B B Singh; T Lockwich; J Jadlowiec; B O'Connell; R Wellner; M X Zhu; I S Ambudkar
Journal:  J Biol Chem       Date:  2000-02-04       Impact factor: 5.157

2.  From TRPs to SOCs, CCEs, and CRACs: consensus and controversies.

Authors:  Bernd Nilius
Journal:  Cell Calcium       Date:  2003 May-Jun       Impact factor: 6.817

3.  Activation of inositol 1,4,5-trisphosphate receptor is essential for the opening of mouse TRP5 channels.

Authors:  H Kanki; M Kinoshita; A Akaike; M Satoh; Y Mori; S Kaneko
Journal:  Mol Pharmacol       Date:  2001-11       Impact factor: 4.436

4.  Expression of canonical transient receptor potential (TRPC) proteins in human glomerular mesangial cells.

Authors:  Sherry Sours; Juan Du; Shaoyou Chu; Min Ding; Xin J Zhou; Rong Ma
Journal:  Am J Physiol Renal Physiol       Date:  2006-01-17

Review 5.  TRP channels.

Authors:  Kartik Venkatachalam; Craig Montell
Journal:  Annu Rev Biochem       Date:  2007       Impact factor: 23.643

Review 6.  Ca2+ signaling microdomains:platforms for the assembly and regulation of TRPC channels.

Authors:  Indu S Ambudkar
Journal:  Trends Pharmacol Sci       Date:  2005-12-07       Impact factor: 14.819

7.  TRPC1 proteins confer PKC and phosphoinositol activation on native heteromeric TRPC1/C5 channels in vascular smooth muscle: comparative study of wild-type and TRPC1-/- mice.

Authors:  Jian Shi; Min Ju; Joel Abramowitz; William A Large; Lutz Birnbaumer; Anthony P Albert
Journal:  FASEB J       Date:  2011-10-03       Impact factor: 5.191

8.  Selective Gαi subunits as novel direct activators of transient receptor potential canonical (TRPC)4 and TRPC5 channels.

Authors:  Jae-Pyo Jeon; Chansik Hong; Eun Jung Park; Ju-Hong Jeon; Nam-Hyuk Cho; In-Gyu Kim; Han Choe; Shmuel Muallem; Hyun Jin Kim; Insuk So
Journal:  J Biol Chem       Date:  2012-03-28       Impact factor: 5.157

9.  TRPC1 is required for functional store-operated Ca2+ channels. Role of acidic amino acid residues in the S5-S6 region.

Authors:  Xibao Liu; Brij B Singh; Indu S Ambudkar
Journal:  J Biol Chem       Date:  2003-01-20       Impact factor: 5.157

10.  Human TRPC5 channel activated by a multiplicity of signals in a single cell.

Authors:  Fanning Zeng; Shang-Zhong Xu; Philippa K Jackson; Damian McHugh; Bhaskar Kumar; Samuel J Fountain; David J Beech
Journal:  J Physiol       Date:  2004-07-14       Impact factor: 5.182

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  17 in total

Review 1.  TRPC1 as a negative regulator for TRPC4 and TRPC5 channels.

Authors:  Jinsung Kim; Juyeon Ko; Jongyun Myeong; Misun Kwak; Chansik Hong; Insuk So
Journal:  Pflugers Arch       Date:  2019-06-20       Impact factor: 3.657

2.  Critical roles of Gi/o proteins and phospholipase C-δ1 in the activation of receptor-operated TRPC4 channels.

Authors:  Dhananjay P Thakur; Jin-bin Tian; Jaepyo Jeon; Jian Xiong; Yu Huang; Veit Flockerzi; Michael X Zhu
Journal:  Proc Natl Acad Sci U S A       Date:  2016-01-11       Impact factor: 11.205

Review 3.  TRPC channels: Structure, function, regulation and recent advances in small molecular probes.

Authors:  Hongbo Wang; Xiaoding Cheng; Jinbin Tian; Yuling Xiao; Tian Tian; Fuchun Xu; Xuechuan Hong; Michael X Zhu
Journal:  Pharmacol Ther       Date:  2020-01-28       Impact factor: 12.310

4.  Identification and optimization of 2-aminobenzimidazole derivatives as novel inhibitors of TRPC4 and TRPC5 channels.

Authors:  Yingmin Zhu; Yungang Lu; Chunrong Qu; Melissa Miller; Jinbin Tian; Dhananjay P Thakur; Jinmei Zhu; Zixin Deng; Xianming Hu; Meng Wu; Owen B McManus; Min Li; Xuechuan Hong; Michael X Zhu; Huai-Rong Luo
Journal:  Br J Pharmacol       Date:  2015-05-11       Impact factor: 8.739

Review 5.  Transient receptor potential channels in sensory mechanisms of the lower urinary tract.

Authors:  Matthias Vanneste; Andrei Segal; Thomas Voets; Wouter Everaerts
Journal:  Nat Rev Urol       Date:  2021-02-03       Impact factor: 14.432

6.  Elevated Expression of TRPC4 in Cortical Lesions of Focal Cortical Dysplasia II and Tuberous Sclerosis Complex.

Authors:  Lu-Kang Wang; Xin Chen; Chun-Qing Zhang; Chao Liang; Yu-Jia Wei; Jiong Yue; Shi-Yong Liu; Hui Yang
Journal:  J Mol Neurosci       Date:  2017-04-28       Impact factor: 3.444

7.  Distribution and Assembly of TRP Ion Channels.

Authors:  Wei Cheng; Jie Zheng
Journal:  Adv Exp Med Biol       Date:  2021       Impact factor: 2.622

8.  Intracellular spermine blocks TRPC4 channel via electrostatic interaction with C-terminal negative amino acids.

Authors:  Jinsung Kim; Sang Hui Moon; Young-Cheul Shin; Ju-Hong Jeon; Kyu Joo Park; Kyu Pil Lee; Insuk So
Journal:  Pflugers Arch       Date:  2015-12-02       Impact factor: 3.657

9.  (-)-Englerin A is a potent and selective activator of TRPC4 and TRPC5 calcium channels.

Authors:  Yasemin Akbulut; Hannah J Gaunt; Katsuhiko Muraki; Melanie J Ludlow; Mohamed S Amer; Alexander Bruns; Naveen S Vasudev; Lea Radtke; Matthieu Willot; Sven Hahn; Tobias Seitz; Slava Ziegler; Mathias Christmann; David J Beech; Herbert Waldmann
Journal:  Angew Chem Int Ed Engl       Date:  2015-02-23       Impact factor: 15.336

Review 10.  Classical Transient Receptor Potential 1 (TRPC1): Channel or Channel Regulator?

Authors:  Alexander Dietrich; Meike Fahlbusch; Thomas Gudermann
Journal:  Cells       Date:  2014-09-29       Impact factor: 6.600

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