Villas-Boas Tribuzy Adriano, Fontes Carlos F L, Nørby Jens G, Barrabin Hector
Departmento de Bioquímica Médica, Universidade Federal do Rio de Janeiro, Rio de Janeiro, 21941-590, Brazil.
Arch Biochem Biophys. 2002 Mar 1;399(1):89-95. doi: 10.1006/abbi.2001.2752.
Effects of dimethyl sulfoxide (Me(2)SO) on substrate affinity for phosphorylation by inorganic phosphate, on phosphorylation by ATP in the absence of Na(+), and on ouabain binding to the free form of the Na(+)/K(+)-ATPase have been attributed to changes in solvation of the active site or Me(2)SO-induced changes in the structure of the enzyme. Here we used selective trypsin cleavage as a procedure to determine the conformations that the Na(+)/K(+)-ATPase acquires in Me(2)SO medium. In water or in Me(2)SO medium, Na(+)/K(+)-ATPase exhibited after partial proteolysis two distinct groups of fragments: (1) in the presence of 0.1 M Na(+) or 0.1 M Na(+) + 3 mM ADP (enzyme in the E1 state) cleavage produced a main fragment of about 76 kDa; and (2) in the presence of 20 mM K(+) (E2 state) a 58-kDa fragment plus two or three fragments of 39-41 kDa were obtained. Cleavage in Me(2)SO medium in the absence of Na(+) and K(+) exhibited the same breakdown pattern as that obtained in the presence of K(+), but a 43-kDa fragment was also observed. An increase in the K(+) concentration to 0.5 mM eliminated the 43-kDa fragment, while a 39- to 41-kDa doublet was accumulated. Both in water and in Me(2)SO medium, a strong enhancement of the 43-kDa band was observed in the presence of either P(i) + ouabain or vanadate, suggesting that the 43-kDa fragment is closely related to the conformation of the phosphorylated enzyme. These results indicate that Me(2)SO acts not only by promoting the release of water from the ATP site, but also by inducing a conformation closely related to the phosphorylated state, even when the enzyme is not phosphorylated.
二甲基亚砜(Me(2)SO)对无机磷酸磷酸化的底物亲和力、在无Na(+)时ATP的磷酸化作用以及哇巴因与Na(+)/K(+)-ATP酶游离形式的结合作用的影响,被归因于活性位点溶剂化的变化或Me(2)SO诱导的酶结构变化。在此,我们使用选择性胰蛋白酶切割作为一种方法来确定Na(+)/K(+)-ATP酶在Me(2)SO介质中所获得的构象。在水或Me(2)SO介质中,部分蛋白水解后,Na(+)/K(+)-ATP酶呈现出两组不同的片段:(1)在存在0.1 M Na(+)或0.1 M Na(+) + 3 mM ADP(处于E1状态的酶)时,切割产生一个约76 kDa的主要片段;(2)在存在20 mM K(+)(E2状态)时,获得一个58 kDa的片段以及两个或三个39 - 41 kDa的片段。在无Na(+)和K(+)的Me(2)SO介质中的切割呈现出与在K(+)存在时相同的降解模式,但也观察到一个43 kDa的片段。将K(+)浓度增加到0.5 mM可消除43 kDa的片段,同时积累一个39 - 41 kDa的双峰。在水和Me(2)SO介质中,在存在Pi + 哇巴因或钒酸盐时均观察到43 kDa条带的强烈增强,表明43 kDa片段与磷酸化酶的构象密切相关。这些结果表明,Me(2)SO不仅通过促进ATP位点的水释放起作用,还通过诱导一种与磷酸化状态密切相关的构象起作用,即使酶未被磷酸化。