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腺嘌呤核苷酸转位酶在缺氧心脏中的保护作用。

Protective role of adenine nucleotide translocase in O2-deficient hearts.

作者信息

Pande S V, Goswami T, Parvin R

出版信息

Am J Physiol. 1984 Jul;247(1 Pt 2):H25-34. doi: 10.1152/ajpheart.1984.247.1.H25.

Abstract

At subsaturating concentrations of palmitoyl-CoA, the carnitine-dependent oxidation of the palmitoyl portion by uncoupled rat heart mitochondria was stimulated by ADP or ATP. This effect was traced to the prevention of acyl-CoA binding to adenine nucleotide translocase and the consequent sparing of acyl-CoA for acylcarnitine formation. Palmitoyl-CoA oxidation was stimulated by ITP also although ITP served neither as a transportable substrate nor as an inhibitor of ADP transport. ITP and other nontransportable nucleoside di(tri)phosphates prevented octanoyl-CoA binding to mitochondria. ITP was bound to mitochondria, and this binding was reversed by ADP, octanoyl-CoA, and carboxyatractyloside. Thus, besides a substrate site, there is a site on the translocase that binds nucleoside di(tri)phosphates, CoA and its esters, and atractylosides; inhibition of the translocase results, however, only from the binding of CoA esters of fatty acids and of atractylosides. We suggest that in O2-deficient hearts, when nucleotides decline and fatty acyl-CoA rises, the binding of the latter to the translocase becomes operational to slow fatty acylcarnitine production. By retarding the rise in amphipathic burden, this mechanism could protect heart against irreversible damage during brief periods of ischemia or hypoxia.

摘要

在棕榈酰辅酶A浓度未饱和时,未偶联的大鼠心脏线粒体对棕榈酰部分的肉碱依赖性氧化作用受到ADP或ATP的刺激。这种效应可追溯到防止酰基辅酶A与腺嘌呤核苷酸转位酶结合,从而节省了用于形成酰基肉碱的酰基辅酶A。尽管ITP既不是可转运的底物,也不是ADP转运的抑制剂,但它也能刺激棕榈酰辅酶A的氧化。ITP和其他不可转运的核苷二(三)磷酸可防止辛酰辅酶A与线粒体结合。ITP与线粒体结合,并且这种结合可被ADP、辛酰辅酶A和羧基苍术苷逆转。因此,除了底物位点外,转位酶上还有一个位点可结合核苷二(三)磷酸、辅酶A及其酯类以及苍术苷;然而,只有脂肪酸的辅酶A酯和苍术苷的结合才会导致转位酶的抑制。我们认为,在缺氧的心脏中,当核苷酸减少而脂肪酰辅酶A增加时,后者与转位酶的结合开始起作用,从而减缓脂肪酰肉碱的产生。通过延缓两亲性负荷的增加,这种机制可以保护心脏在短暂的缺血或缺氧期间免受不可逆的损伤。

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