Ubiquitous ATP-sensitive potassium-channel genes

Chemistry: molecular biology and microbiology – Micro-organism – per se ; compositions thereof; proces of... – Bacteria or actinomycetales; media therefor

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4353201, 43525411, 435325, 536 231, 536 234, 536 235, 536 243, 536 2431, 536 2432, C12N 121, C12N 510, C12N 1511, C12N 1563

Patent

active

059196920

ABSTRACT:
The present invention provides novel ATP-sensitive potassium-channel proteins which are present ubiquitously in the living bodies of animals, and their genes.

REFERENCES:
Asford et al. Nature 370:456-459, Aug. 1994.
Bowie et al. Science 247:1306-1310, 1990.
Wells. Biochemistry 29:8509-8517, 1990.
Ngo et al. The Protein Folding Problem and Tertiary Structure Prediction, Merz et al., eds., Birkhauser, Boston, pp. 492-495, 1994.
J Biol Chem, Mar. 17, 1995, 270 (11) P5691-4, United States, XP002019860, Susumu Seino Inohana Shukusha Chiba University: "Cloning and functional characterization of a novel ATP--sensitive potassium channel ubiquitously expressed in rat tissues, including pancreatic islets, pituitary, skeletal muscle, and heart."
Genomics, Nov. 1, 1995, 30 (1) P102-4, United States, XP000612109 Inagaki N et al: "cDNA sequence, gene structure, and chromosomal localization of the human ATP--sensitive potassium channel, uKATP-1, gene (KCNJ8)."
"The Journal of Biochemical Chemistry", vol. 270, No. 11, issue of Mar. 17, 1995.

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