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Subunit interactions in hybrids of native carboxypeptidase-treated and citraconylated rabbit muscle aldolase

机译:天然羧肽酶处理和柠康酰化兔肌肉醛缩酶的杂种中的亚基相互作用

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摘要

1. The kinetic properties of hybrids of native (or carboxypeptidase-treated) and citraconylated rabbit muscle aldolase are compared with those of equivalent mixtures of the parental enzymes. 2. In the hybrids, the native subunits function slightly less well than in the homotetramer, but the citraconylated subunits have enhanced activity. 3. Subunits of carboxypeptidase-treated aldolase behave essentially as expected in a hybrid environment, but the citraconylated subunits do not show the same enhancement of activity found in the hybrids of native and citraconylated enzyme. The apparent affinity for fructose 1,6-diphosphate of the citraconylated subunits in hybrids of carboxypeptidase-treated and citraconylated aldolase is increased. 4. These results are interpreted in terms of a substrate-induced conformational difference between native and carboxypeptidase-treated aldolase. 5. This conformational change can take place within a single native subunit in the hybrids and does not require a similar conformational change to occur simultaneously in the other three subunits.
机译:1.将天然(或经羧肽酶处理的)和柠康酰化的兔肌肉醛缩酶的杂交体的动力学特性与亲本酶的等效混合物的动力学特性进行了比较。 2.在杂种中,天然亚基的功能略低于同型四聚体,但柠康酰化的亚基具有增强的活性。 3.羧肽酶处理的醛缩酶的亚基在杂交环境中的表现基本上与预期的一样,但是柠康酰化的亚基没有表现出在天然和柠康酰化酶的杂交物中发现的相同的活性增强。在羧肽酶处理的和柠康酰化的醛缩酶的杂化物中,对柠康酰化的亚基的果糖1,6-二磷酸的表观亲和力增加。 4.根据天然和羧肽酶处理的醛缩酶之间的底物诱导的构象差异来解释这些结果。 5.这种构象变化可以发生在杂种的单个天然亚基中,并且不需要在其他三个亚基中同时发生类似的构象变化。

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