MECHANISM FOR CD-2+ INHIBITION OF (K+ + MG-2+)ATPASE ACTIVITY AND K+(RB-86+) UPTAKE JOIN ROOTS OF SUGAR-BEET (BETA-VULGARIS)
MECHANISM FOR CD-2+ INHIBITION OF (K+ + MG-2+)ATPASE ACTIVITY AND K+(RB-86+) UPTAKE JOIN ROOTS OF SUGAR-BEET (BETA-VULGARIS)
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DOI:
10.1111/j.1399-3054.1985.tb01900.x
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发表时间:
1985-01-01
影响因子:
6.4
通讯作者:
WINGSTRAND, G
中科院分区:
文献类型:
--
作者:
LINDBERG, S;WINGSTRAND, G
Steady state kinetics were used to examine the influence of Cd2+both on K+stimulation of a membrane‐bound ATPase from sugar beet roots (Beta vulgarisL. cv. Monohill) and on K+(86Rb+) uptake in intact or excised beet roots. The in vitro effect of Cd2+was studied both on a 12000–25000 g root fraction of the (Na++K++Mg2+)ATPase and on the ATPase when further purified by an aqueous polymer two‐phase system. The observed data can be summarized as follows: 1) Cd2+at high concentrations (>100 μM) inhibits the MgATPase activity in a competitive way, probably by forming a complex with ATP. 2) Cd2+at concentrations <100 μMinhibits the specific K+activation at both high and low affinity sites for K+. The inhibition pattern appears to be the same in the two ATPase preparations of different purity. In the presence of the substrate MgATP, and at K+<5 mM, the inhibition by Cd2+with respect to K+is uncompetitive. In the presence of MgATP and K+>10 μM, the inhibition by Cd2+is competitive. 3) At the low concentrations of K+, Cd2+also inhibits the 2,4‐dinitrophenol(DNP)‐sensitive (metabolic) K+(86Rb+) uptake uncompetitively both in excised roots and in roots of intact plants. 4) The DNP‐insensitive (non metabolic) K+(86Rb+) uptake is little influenced by Cd2+. As Cd2+inhibits the metabolic uptake of K+(86Rb+) and the K+activation of the ATPase in the same way at low concentrations of K+, the same binding site is probably involved. Therefore, under field conditions, when the concentration of K+is low, the presence of Cd2+could be disadvantageous.