References |
"TASK-5, a new member of the tandem-pore K(+) channel family.";,Kim D., Gnatenco C.;,Biochem. Biophys. Res. Commun. 284:923-930(2001).,PubMeb:11409881 DOI:10.1006/bbrc.2001.5064
"KT3.2 and KT3.3, two novel human two-pore K(+) channels closelyrelated to TASK-1.";,Vega-Saenz de Miera E., Lau D.H.P., Zhadina M., Pountney D.,Coetzee W.A., Rudy B.;,J. Neurophysiol. 86:130-142(2001)., PubMeb:11431495
"Expression pattern in brain of TASK-1, TASK-3, and a tandem poredomain K(+) channel subunit, TASK-5, associated with the centralauditory nervous system.";,Karschin C., Wischmeyer E., Preisig-Mueller R., Rajan S., Derst C.,Grzeschik K.-H., Daut J., Karschin A.;,Mol. Cell. Neurosci. 18:632-648(2001)., PubMeb:11749039 DOI:10.1006/mcne.2001.1045
"TASK-5, a novel member of the tandem pore K+ channel family.";,Ashmole I., Goodwin P.A., Stanfield P.R.;,Pflugers Arch. 442:828-833(2001)., PubMeb:11680614 DOI:10.1007/s004240100620
"The DNA sequence and comparative analysis of human chromosome 20.";,Deloukas P., Matthews L.H., Ashurst J.L., Burton J., Gilbert J.G.R.,Jones M., Stavrides G., Almeida J.P., Babbage A.K., Bagguley C.L.,Bailey J., Barlow K.F., Bates K.N., Beard L.M., Beare D.M.,Beasley O.P., Bird C.P., Blakey S.E., Bridgeman A.M., Brown A.J.,Buck D., Burrill W.D., Butler A.P., Carder C., Carter N.P.,Chapman J.C., Clamp M., Clark G., Clark L.N., Clark S.Y., Clee C.M.,Clegg S., Cobley V.E., Collier R.E., Connor R.E., Corby N.R.,Coulson A., Coville G.J., Deadman R., Dhami P.D., Dunn M.,Ellington A.G., Frankland J.A., Fraser A., French L., Garner P.,Grafham D.V., Griffiths C., Griffiths M.N.D., Gwilliam R., Hall R.E.,Hammond S., Harley J.L., Heath P.D., Ho S., Holden J.L., Howden P.J.,Huckle E., Hunt A.R., Hunt S.E., Jekosch K., Johnson C.M., Johnson D.,Kay M.P., Kimberley A.M., King A., Knights A., Laird G.K., Lawlor S.,Lehvaeslaiho M.H., Leversha M.A., Lloyd C., Lloyd D.M., Lovell J.D.,Marsh V.L., Martin S.L., McConnachie L.J., McLay K., McMurray A.A.,Milne S.A., Mistry D., Moore M.J.F., Mullikin J.C., Nickerson T.,Oliver K., Parker A., Patel R., Pearce T.A.V., Peck A.I.,Phillimore B.J.C.T., Prathalingam S.R., Plumb R.W., Ramsay H.,Rice C.M., Ross M.T., Scott C.E., Sehra H.K., Shownkeen R., Sims S.,Skuce C.D., Smith M.L., Soderlund C., Steward C.A., Sulston J.E.,Swann R.M., Sycamore N., Taylor R., Tee L., Thomas D.W., Thorpe A.,Tracey A., Tromans A.C., Vaudin M., Wall M., Wallis J.M.,Whitehead S.L., Whittaker P., Willey D.L., Williams L., Williams S.A.,Wilming L., Wray P.W., Hubbard T., Durbin R.M., Bentley D.R., Beck S.,Rogers J.;,Nature 414:865-871(2001)., PubMeb:11780052 DOI:10.1038/414865a
"The status, quality, and expansion of the NIH full-length cDNAproject: the Mammalian Gene Collection (MGC).";,Genome Res. 14:2121-2127(2004).,PubMeb:15489334 DOI:10.1101/gr.2596504
"Global, in vivo, and site-specific phosphorylation dynamics insignaling networks.";,Olsen J.V., Blagoev B., Gnad F., Macek B., Kumar C., Mortensen P.,Mann M.;,Cell 127:635-648(2006).,PubMeb:17081983 DOI:10.1016/j.cell.2006.09.026
|