Click here to close
Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly.
We suggest using a current version of Chrome,
FireFox, or Safari.
J Membr Biol
2014 May 01;2475:387-93. doi: 10.1007/s00232-014-9645-0.
Show Gene links
Show Anatomy links
Downregulation of chloride channel ClC-2 by Janus kinase 3.
Warsi J, Elvira B, Hosseinzadeh Z, Shumilina E, Lang F.
???displayArticle.abstract???
Janus kinase-3 (JAK3) fosters proliferation and counteracts apoptosis of lymphocytes and tumor cells. The gain of function mutation (A572V)JAK3 has been discovered in acute megakaryoplastic leukemia. JAK3 is inactivated by replacement of lysine by alanine in the catalytic subunit ((K855A)JAK3). Regulation of cell proliferation and apoptosis involves altered activity of Cl(-) channels. The present study, thus, explored whether JAK3 modifies the function of the small conductance Cl(-) channel ClC-2. To this end, ClC-2 was expressed in Xenopus oocytes with or without wild-type JAK3, (A568V)JAK3 or (K851A)JAK3, and the Cl(-) channel activity determined by dual-electrode voltage clamp. Channel protein abundance in the cell membrane was determined utilizing chemiluminescence. As a result, expression of ClC-2 was followed by a marked increase of cell membrane conductance. The conductance was significantly decreased following coexpression of JAK3 or (A568V)JAK3, but not by coexpression of (K851A)JAK3. Exposure of the oocytes expressing ClC-2 together with (A568V)JAK3 to the JAK3 inhibitor WHI-P154 (4-[(3'-bromo-4'-hydroxyphenyl)amino]-6,7-dimethoxyquinazoline, 22 μM) increased the conductance. Coexpression of (A568V)JAK3 decreased the ClC-2 protein abundance in the cell membrane of ClC-2 expressing oocytes. The decline of conductance in ClC-2 and (A568V)JAK3 coexpressing oocytes following inhibition of channel protein insertion by brefeldin A (5 μM) was similar in oocytes expressing ClC-2 with (A568V)JAK3 and oocytes expressing ClC-2 alone, indicating that (A568V)JAK3 might slow channel protein insertion into rather than accelerating channel protein retrieval from the cell membrane. In conclusion, JAK3 downregulates ClC-2 activity and thus counteracts Cl(-) exit-an effect possibly influencing cell proliferation and apoptosis.
Alesutan,
Upregulation of Na-coupled glucose transporter SGLT1 by Tau tubulin kinase 2.
2012, Pubmed,
Xenbase
Alesutan,
Upregulation of Na-coupled glucose transporter SGLT1 by Tau tubulin kinase 2.
2012,
Pubmed
,
Xenbase Almilaji,
Upregulation of Na+,Cl(-)-coupled betaine/γ-amino-butyric acid transporter BGT1 by Tau tubulin kinase 2.
2013,
Pubmed
,
Xenbase Almilaji,
Down-regulation of Na/K+ atpase activity by human parvovirus B19 capsid protein VP1.
2013,
Pubmed
,
Xenbase Blaisdell,
pH-regulated chloride secretion in fetal lung epithelia.
2000,
Pubmed Bogatikov,
Up-regulation of amino acid transporter SLC6A19 activity and surface protein abundance by PKB/Akt and PIKfyve.
2012,
Pubmed
,
Xenbase Bösl,
Male germ cells and photoreceptors, both dependent on close cell-cell interactions, degenerate upon ClC-2 Cl(-) channel disruption.
2001,
Pubmed Bröer,
Expression of Na+-independent isoleucine transport activity from rat brain in Xenopus laevis oocytes.
1994,
Pubmed
,
Xenbase Cornejo,
JAK3: a two-faced player in hematological disorders.
2009,
Pubmed de Totero,
The opposite effects of IL-15 and IL-21 on CLL B cells correlate with differential activation of the JAK/STAT and ERK1/2 pathways.
2008,
Pubmed Elinder,
Opening of plasma membrane voltage-dependent anion channels (VDAC) precedes caspase activation in neuronal apoptosis induced by toxic stimuli.
2005,
Pubmed Fainstein,
Neural precursor cells inhibit multiple inflammatory signals.
2008,
Pubmed Furukawa,
Characteristics of rabbit ClC-2 current expressed in Xenopus oocytes and its contribution to volume regulation.
1998,
Pubmed
,
Xenbase Ghoreschi,
Janus kinases in immune cell signaling.
2009,
Pubmed Gründer,
Regions involved in the opening of CIC-2 chloride channel by voltage and cell volume.
,
Pubmed
,
Xenbase Haan,
Jak1 has a dominant role over Jak3 in signal transduction through γc-containing cytokine receptors.
2011,
Pubmed Hosseinzadeh,
Upregulation of peptide transporters PEPT1 and PEPT2 by Janus kinase JAK2.
2013,
Pubmed
,
Xenbase Hosseinzadeh,
Down-regulation of the myoinositol transporter SMIT by JAK2.
2012,
Pubmed
,
Xenbase Hosseinzadeh,
Downregulation of ClC-2 by JAK2.
2012,
Pubmed
,
Xenbase Hosseinzadeh,
Downregulation of KCNQ4 by Janus kinase 2.
2013,
Pubmed
,
Xenbase Imada,
The Jak-STAT pathway.
2000,
Pubmed Jentsch,
Properties of voltage-gated chloride channels of the ClC gene family.
1995,
Pubmed Kim,
MS-1020 is a novel small molecule that selectively inhibits JAK3 activity.
2010,
Pubmed Kowalczuk,
A protein complex in the brush-border membrane explains a Hartnup disorder allele.
2008,
Pubmed
,
Xenbase Lang,
The diversity of volume regulatory mechanisms.
1998,
Pubmed Lang,
Ion channels and cell volume in regulation of cell proliferation and apoptotic cell death.
2006,
Pubmed Lang,
Cell volume regulatory ion channels in cell proliferation and cell death.
2007,
Pubmed Macri,
Hypertonicity decreases basolateral K+ and Cl- conductances in rabbit proximal convoluted tubule.
1997,
Pubmed Malinge,
Activating mutations in human acute megakaryoblastic leukemia.
2008,
Pubmed Mia,
Downregulation of Kv1.5 K channels by the AMP-activated protein kinase.
2012,
Pubmed
,
Xenbase Munoz,
Up-regulation of the inwardly rectifying K⁺ channel Kir2.1 (KCNJ2) by protein kinase B (PKB/Akt) and PIKfyve.
2013,
Pubmed
,
Xenbase Myssina,
Cl- channel blockers NPPB and niflumic acid blunt Ca(2+)-induced erythrocyte 'apoptosis'.
2004,
Pubmed Nakayama,
BLNK suppresses pre-B-cell leukemogenesis through inhibition of JAK3.
2009,
Pubmed Okada,
Apoptosis, cell volume regulation and volume-regulatory chloride channels.
2001,
Pubmed Okada,
Dual roles of plasmalemmal chloride channels in induction of cell death.
2004,
Pubmed O'Shea,
Cytokine signaling in 2002: new surprises in the Jak/Stat pathway.
2002,
Pubmed Pakladok,
PIKfyve sensitivity of hERG channels.
2013,
Pubmed
,
Xenbase Pakladok,
Stimulation of the Na(+)-coupled glucose transporter SGLT1 by B-RAF.
2012,
Pubmed
,
Xenbase Pathare,
Enhanced FGF23 serum concentrations and phosphaturia in gene targeted mice expressing WNK-resistant SPAK.
2012,
Pubmed Pathare,
OSR1-sensitive renal tubular phosphate reabsorption.
2012,
Pubmed
,
Xenbase Porcelli,
Apoptosis induced by staurosporine in ECV304 cells requires cell shrinkage and upregulation of Cl- conductance.
2004,
Pubmed Pusch,
Chloride dependence of hyperpolarization-activated chloride channel gates.
1999,
Pubmed
,
Xenbase Ritter,
Cell shrinkage stimulates bradykinin-induced cell membrane potential oscillations in NIH 3T3 fibroblasts expressing the ras-oncogene.
1993,
Pubmed Shimizu,
A role of reactive oxygen species in apoptotic activation of volume-sensitive Cl(-) channel.
2004,
Pubmed Shojaiefard,
Downregulation of the creatine transporter SLC6A8 by JAK2.
2012,
Pubmed
,
Xenbase Shuai,
Regulation of JAK-STAT signalling in the immune system.
2003,
Pubmed Souktani,
Induction of apoptosis using sphingolipids activates a chloride current in Xenopus laevis oocytes.
2000,
Pubmed
,
Xenbase Staley,
Alteration of GABAA receptor function following gene transfer of the CLC-2 chloride channel.
1996,
Pubmed Stegen,
Swelling-induced taurine release without chloride channel activity in Xenopus laevis oocytes expressing anion channels and transporters.
2000,
Pubmed
,
Xenbase Szabò,
Tyrosine kinase-dependent activation of a chloride channel in CD95-induced apoptosis in T lymphocytes.
1998,
Pubmed Thiemann,
A chloride channel widely expressed in epithelial and non-epithelial cells.
1992,
Pubmed
,
Xenbase Uckun,
Targeting JAK3 tyrosine kinase-linked signal transduction pathways with rationally-designed inhibitors.
2007,
Pubmed Walters,
Activating alleles of JAK3 in acute megakaryoblastic leukemia.
2006,
Pubmed Warsi,
Effect of Janus kinase 3 on the peptide transporters PEPT1 and PEPT2.
2013,
Pubmed
,
Xenbase Wei,
Effects of chloride and potassium channel blockers on apoptotic cell shrinkage and apoptosis in cortical neurons.
2004,
Pubmed Zuo,
Chloride channels involve in hydrogen peroxide-induced apoptosis of PC12 cells.
2009,
Pubmed