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A study on the two binding sites of hexokinase on brain mitochondria

机译:己糖激酶在脑线粒体上的两个结合位点的研究

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Background:Type I hexokinase(HK-I)constitutes the predominant form of the enzyme in the brain,a major portion of which is associated with the outer mitochondrial membrane involving two sets of binding sites.In addition to the glucose-6-phosphate(G6P)-sensitive site(Type A),the enzyme is bound on a second set of sites(Type B)which are,while insensitive to G6P,totally releasable by use of high concentrations of chaotropic salts such as KSCN.Results obtained on release of HK-I from these"sites"suggested the possibility for the existence of distinct populations of the bound enzyme,differing in susceptibility to release by G6P. Results:In the present study,the sensitivity of HK-I toward release by G6P(2 mM)and a low concentration of KSCN(45 mM)was investigated using rat brain,bovine brain and human brain mitochondria.Partial release from the G6P-insensitive site occurred without disruption of the mitochondrial membrane as a whole and as related to HK-I binding to the G6P-sensitive site. While,as expected,the sequential regime release-rebinding-release was observed on site A,no rebinding was detectable on site B,pre-treated with 45 mM KSCN.Also,no binding was detectable on mitochondria upon blocking site A for HK-I binding utilizing dicyclohexylcarbodiimide(DCCD), followed by subsequent treatment with KSCN.These observations while confirmed the previously- published results on the overall properties of the two sites,demonstrated for the first time that the reversible association of the enzyme on mitochondria is uniquely related to the Type A site. Conclusion:Use of very low concentrations of KSCN at about 10%of the level previously reported to cause total release of HK-I from the G6P-insensitive site,caused partial release from this site in a reproducible manner.In contrast to site A,no rebinding of the enzyme takes place on site B,suggesting that site A is'the only physiologically-important site in relation to the release- rebinding of the enzyme which occur in response to the energy requirements of the brain.Based on the results presented,a possible physiological role for distribution of the enzyme between the two sites on the mitochondrion is proposed.
机译:背景:I型己糖激酶(HK-I)构成大脑中该酶的主要形式,其主要部分与线粒体外膜相关,该线粒体膜涉及两组结合位点。此外,葡萄糖-6-磷酸( G6P)敏感位点(A型),该酶结合在第二组位点(B型)上,这些位点对G6P不敏感,但可通过使用高浓度的离液盐如KSCN完全释放。来自这些“位点”的HK-1的存在建议存在结合的酶的不同群体的可能性,不同的是G6P释放的敏感性。结果:在本研究中,使用大鼠脑,牛脑和人脑线粒体研究了HK-1对G6P(2 mM)释放和低浓度KSCN(45 mM)释放的敏感性。整体上不发生线粒体膜破坏且与HK-1与G6P敏感位点的结合有关,出现了不敏感位点。尽管如预期的那样,在位点A上观察到了连续的方案释放-重新结合-释放,但在用45 mM KSCN预处理的位点B上未检测到重新结合。此外,在阻断HK-的位点A的线粒体上也未检测到结合我用二环己基碳二亚胺(DCCD)结合,然后用KSCN处理。这些观察结果证实了先前发表的关于两个位点总体特性的结果,首次证明了线粒体上酶的可逆结合是唯一相关的。到A型网站。结论:使用非常低浓度的KSCN,其浓度约为先前报道的导致HK-1从G6P不敏感位点完全释放的水平的10%,导致可重复地从该位点部分释放。在位点B上没有发生酶的重新结合,这表明位点A是与响应脑部能量需求而发生的酶的释放-重新结合有关的唯一生理上重要的位点。提出了一种可能的酶在线粒体两个位点之间分布的生理作用。

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