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Non-classical inhibition of uricase by cyanide.

机译:氰化物对尿酸酶的非经典抑制作用。

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摘要

The interactions of Aspergillus flavus uricase with the substrates O2 and urate and the inhibitors xanthine, cyanide, periodate and hydroxylamine were investigated. Under equilibrium conditions O2 does not bind directly to the enzyme, and the absence of O2 had no effect on either the binding stoicheiometry or binding constant for xanthine, as measured by equilibrium dialysis and microcalorimetry. Cyanide, periodate and hydroxylamine inhibit uricase in a non-classical manner. A decrease in initial velocity to a steady-state inhibited velocity can be observed on a time scale of minutes. The time-dependence, which is unaltered by prior incubation with the inhibitors, is consistent with a first-order transition. Rate constants for induction of inhibition are linearly dependent on inhibitor concentration, but independent of urate and O2 concentrations. Radioactively labelled urate forms a stable but reversible complex with uricase in the presence of cyanide and O2. These results were used to deduce the nature of enzyme-bound intermediates and thus for the proposal of a novel mechanism for cyanide inhibition.
机译:研究了黄曲霉尿酸酶与底物O2和尿酸盐以及抑制剂黄嘌呤,氰化物,高碘酸盐和羟胺的相互作用。在平衡条件下,O2不会直接与酶结合,并且通过平衡透析和微量量热法测量,不存在O2对黄嘌呤的结合化学计量或结合常数均无影响。氰化物,高碘酸盐和羟胺以非经典方式抑制尿酸酶。在几分钟的时间范围内,可以观察到初始速度降低到稳态抑制速度。与抑制剂的预先孵育不会改变时间依赖性,这与一阶过渡一致。诱导抑制的速率常数与抑制剂浓度线性相关,但与尿酸盐和氧气浓度无关。放射性标记的尿酸盐在氰化物和O2存在下与尿酸酶形成稳定但可逆的络合物。这些结果被用来推断酶结合中间体的性质,并因此提出了抑制氰化物的新机制。

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