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卤虫在盐适应过程中赖氨酸取代的钠钾泵的调控与功能

Regulation and function of lysine-substituted Na,K pumps in salt adaptation of Artemia franciscana.

作者信息

Jorgensen Peter Leth, Amat Francisco

机构信息

Department of Molecular Biology, University of Copenhagen, Universitetsparken 13, Copenhagen OE, Denmark.

出版信息

J Membr Biol. 2008 Jan;221(1):39-49. doi: 10.1007/s00232-007-9083-3. Epub 2007 Dec 12.

DOI:10.1007/s00232-007-9083-3
PMID:18074167
Abstract

The brine shrimp Artemia thrives at extreme conditions of up to 300 g/l salt in hypersaline lakes, but the molecular aspects of this salt adaptation are not clarified. To examine the influence of salt on the expression of two isoforms of Na,K-ATPase, adult Artemia franciscana were cultured for 39 days with the microalga Dunaliella salina as fodder at increasing salt from 30 to 280 g/l. Quantitative reverse-transcriptase polymerase chain reaction showed that the abundance of mRNA of the lysine-substituted alpha(2)(KK)-subunit was very low at 30 g/l salt but rose steeply in the range of 70-200 g/l to a level at 200-280 g/l salt, similar to the abundance of the mRNA of the alpha(1)(NN)-subunit, which was insignificantly affected by increasing salt. Site-directed mutagenesis showed that Asn324Lys and Asn776Lys in the alpha(1)-subunit of pig kidney Na,K-ATPase reduced the stoichiometry of (204)Tl binding from 2 to about 1 Tl(+)(K(+)) per alpha-subunit and Na(+)-dependent phosphorylation from ATP to 25-30%. In structure models, the epsilon-amino group of Lys776 is located at cation site 1 in the E(1)P form and near cation site 2 in the E(2) conformation, while the side chain of Lys324 points away from the cation sites. Salt-induced expression of the alpha(2)(KK)-subunit Na,K-ATPase in A. franciscana may reduce the Na(+)/ATP ratio and enable the Na,K pump to extrude Na(+) against steeper gradients and, thus, contribute to salt adaptation.

摘要

卤虫在盐度高达300克/升的超盐湖极端条件下茁壮成长,但这种盐适应性的分子机制尚不清楚。为了研究盐对钠钾ATP酶两种同工型表达的影响,将成年旧金山卤虫以盐藻作为饲料培养39天,盐度从30克/升增加到280克/升。定量逆转录聚合酶链反应表明,赖氨酸取代的α(2)(KK)亚基的mRNA丰度在30克/升盐度时非常低,但在70 - 200克/升范围内急剧上升,在200 - 280克/升盐度时达到与α(1)(NN)亚基mRNA丰度相似的水平,而α(1)(NN)亚基的mRNA丰度受盐度增加的影响不显著。定点诱变表明,猪肾钠钾ATP酶α(1)亚基中的Asn324Lys和Asn776Lys将(204)Tl结合的化学计量从每个α亚基2个降低到约1个Tl(+)(K(+)),并将ATP依赖的钠依赖磷酸化降低到25 - 30%。在结构模型中,Lys776的ε-氨基在E(1)P形式中位于阳离子位点1,在E(2)构象中靠近阳离子位点2,而Lys324的侧链指向远离阳离子位点的方向。盐诱导的旧金山卤虫α(2)(KK)亚基钠钾ATP酶表达可能会降低Na(+)/ATP比值,使钠钾泵能够逆着更陡的梯度排出Na(+),从而有助于盐适应性。

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