Laboratorio de Fisiología Molecular, Centro de Biofísica y Bioquímica, Instituto Venezolano de Investigaciones Científicas (IVIC), Apartado 21827, Caracas 1020-A, Venezuela.
Arch Biochem Biophys. 2010 Apr 1;496(1):21-32. doi: 10.1016/j.abb.2010.01.014. Epub 2010 Feb 1.
Distal colon absorbs K+ through a Na+-independent, ouabain-sensitive H+/K+-exchange, associated to an apical ouabain-sensitive H+/K+-ATPase. Expression of HKalpha2, gene associated with this ATPase, induces K+-transport mechanisms, whose ouabain susceptibility is inconsistent. Both ouabain-sensitive and ouabain-insensitive K+-ATPase activities have been described in colonocytes. However, native H+/K+-ATPases have not been identified as unique biochemical entities. Herein, a procedure to purify ouabain-sensitive H+/K+-ATPase from guinea-pig distal colon is described. H+/K+-ATPase is Mg2+-dependent and activated by K+, Cs+ and NH4+ but not by Na+ or Li+, independently of K+-accompanying anion. H+/K+-ATPase was inhibited by ouabain and vanadate but insensitive to SCH-28080 and bafilomycin-A. Enzyme was phosphorylated from [32P]-gamma-ATP, forming an acyl-phosphate bond, in an Mg2+-dependent, vanadate-sensitive process. K+ inhibited phosphorylation, effect blocked by ouabain. H+/K+-ATPase is an alpha/beta-heterodimer, whose subunits, identified by Tandem-mass spectrometry, seems to correspond to HKalpha2 and Na+/K+-ATPase beta1-subunit, respectively. Thus, colonic ouabain-sensitive H+/K+-ATPase is a distinctive P-type ATPase.
远端结肠通过一种不依赖于钠的、哇巴因敏感的 H+/K+-交换来吸收 K+,这种交换与顶端的哇巴因敏感的 H+/K+-ATPase 相关。与这种 ATPase 相关的 HKalpha2 基因的表达诱导了 K+转运机制,但其哇巴因敏感性不一致。在结肠细胞中已经描述了既对哇巴因敏感又对哇巴因不敏感的 K+-ATPase 活性。然而,尚未将天然的 H+/K+-ATPase 鉴定为独特的生化实体。本文描述了从豚鼠远端结肠纯化哇巴因敏感的 H+/K+-ATPase 的程序。H+/K+-ATPase 依赖于 Mg2+,并被 K+、Cs+和 NH4+激活,但不受 Na+或 Li+的影响,与 K+伴随的阴离子无关。H+/K+-ATPase 被哇巴因和钒酸盐抑制,但对 SCH-28080 和巴弗洛霉素-A 不敏感。酶从[32P]-γ-ATP 磷酸化,形成酰基磷酸键,这是一个 Mg2+-依赖的、钒酸盐敏感的过程。K+ 抑制磷酸化,哇巴因可阻断该作用。H+/K+-ATPase 是一种α/β 异源二聚体,其亚基通过串联质谱鉴定,分别对应于 HKalpha2 和 Na+/K+-ATPase β1 亚基。因此,结肠中的哇巴因敏感的 H+/K+-ATPase 是一种独特的 P 型 ATPase。