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首页> 外文期刊>American Journal of Physiology >Functional expression of putative H+-K+-ATPase from guinea pig distal colon.
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Functional expression of putative H+-K+-ATPase from guinea pig distal colon.

机译:豚鼠远端结肠推定的H + -K + -ATPase的功能性表达。

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摘要

A guinea pig cDNA encoding the putative colonic H+-K+-ATPase alpha-subunit (T. Watanabe, M. Sato, K. Kaneko, T. Suzuki, T. Yoshida, and Y. Suzuki; GenBank accession no. D21854) was functionally expressed in HEK-293, a human kidney cell line. The cDNA for the putative colonic H+-K+-ATPase was cotransfected with cDNA for either rabbit gastric H+-K+-ATPase or Torpedo Na+-K+-ATPase beta-subunit. In both expressions, Na+-independent, K+-dependent ATPase (K+-ATPase) activity was detected in the membrane fraction of the cells, with a Michaelis-Menten constant for K+ of 0.68 mM. The expressed K+-ATPase activity was inhibited by ouabain, with its IC50 value being 52 microM. However, the activity was resistant to Sch-28080, an inhibitor specific for gastric H+-K+-ATPase. The ATPase was not functionally expressed in the absence of the beta-subunits. Therefore, it is concluded that the cDNA encodes the catalytic subunit (alpha-subunit) of the colonic H+-K+-ATPase. Although the beta-subunit of the colonic H+-K+-ATPase has not been identified yet, both gastric H+-K+-ATPase and Na+-K+-ATPase beta-subunits were found to act as a surrogate for the colonic beta-subunit for the functional expression of the ATPase. The present colonic H+-K+-ATPase first expressed in mammalian cells showed the highest ouabain sensitivity in expressed colonic H+-K+-ATPases so far reported (rat colonic in Xenopus oocytes had an IC50 = 0.4-1 mM; rat colonic in Sf9 cells had no ouabain sensitivity).
机译:功能上编码豚鼠结肠H + -K + -ATPaseα-亚基的豚鼠cDNA(T.渡边,M。Sato,K.Kaneko,T。Suzuki,T.Yoshida和Y.Suzuki; GenBank登录号D21854)在人类肾脏细胞系HEK-293中表达。将推定结肠H + -K + -ATPase的cDNA与兔胃H + -K + -ATPase或鱼雷Na + -K + -ATPaseβ-亚基的cDNA共转染。在这两种表达中,在细胞膜部分均检测到Na +依赖性,K +依赖性ATPase(K + -ATPase)活性,K +的Michaelis-Menten常数为0.68 mM。哇巴因抑制表达的K + -ATPase活性,其IC50值为52 microM。然而,该活性对Sch-28080具有抗性,Sch-28080是对胃H + -K + -ATP酶具有特异性的抑制剂。在没有β亚基的情况下,ATP酶没有功能性表达。因此,可以得出结论,该cDNA编码结肠H + -K + -ATP酶的催化亚基(α-亚基)。尽管尚未鉴定出结肠H + -K + -ATPase的β-亚基,但胃H + -K + -ATPase和Na + -K + -ATPase的β-亚基均被发现可以替代结肠H + -K + -ATPase的β-亚基。 ATPase的功能性表达。迄今报道,在哺乳动物细胞中首次表达的目前结肠H + -K + -ATPase在表达的结肠H + -K + -ATPase中显示出最高的哇巴因敏感性(非洲爪蟾卵母细胞中的大鼠结肠IC50 = 0.4-1 mM; Sf9细胞中的大鼠结肠具有没有哇巴因敏感性)。

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