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肾上腺皮质和心脏线粒体对细胞色素P-450scc和肾上腺皮质铁氧还蛋白前体形式的差异加工。

Discriminatory processing of the precursor forms of cytochrome P-450scc and adrenodoxin by adrenocortical and heart mitochondria.

作者信息

Matocha M F, Waterman M R

出版信息

J Biol Chem. 1984 Jul 10;259(13):8672-8.

PMID:6736044
Abstract

The mitochondrial proteins involved in adrenocortical steroidogenesis are synthesized as higher molecular weight precursors which require processing by the mitochondria to their mature sizes. The post-translational maturation of two of these proteins has been examined: the cholesterol side chain cleavage cytochrome P-450 (P-450scc) and the iron-sulfur protein, adrenodoxin. Total translation products synthesized in a cell-free system programmed by bovine adrenocortical poly(A+) RNA were incubated with isolated bovine adrenocortical or heart mitochondria followed by immunoisolation of radiolabeled P-450scc or adrenodoxin. In the presence of adrenocortical mitochondria, the precursor form of P-450scc was converted into a trypsin-resistant form that had the same molecular weight as mature P-450scc. Unlike adrenocortical mitochondria, heart mitochondria were unable to process the P-450scc precursor which remained unaltered and trypsin-sensitive. In addition, a matrix fraction of heart mitochondria did not cleave the P-450scc precursor. In contrast, the adrenodoxin precursor did not exhibit similar specificity as it was processed to the mature form by both adrenocortical and heart mitochondria. Also, the adrenocortical mitochondria were not restricted to processing endogenous proteins as they imported and cleaved the precursor to ornithine transcarbamylase. The results indicate that some mitochondrial precursor proteins have tertiary structures which allow them to be recognized by all mitochondria while other mitochondrial precursor proteins have structures recognizable by only specialized mitochondria.

摘要

参与肾上腺皮质类固醇生成的线粒体蛋白是以较高分子量的前体形式合成的,这些前体需要线粒体将其加工成成熟大小。已对其中两种蛋白的翻译后成熟过程进行了研究:胆固醇侧链裂解细胞色素P - 450(P - 450scc)和铁硫蛋白肾上腺铁氧还蛋白。用牛肾上腺皮质多聚腺苷酸(poly(A+))RNA编程的无细胞系统中合成的总翻译产物,与分离的牛肾上腺皮质或心脏线粒体一起孵育,随后对放射性标记的P - 450scc或肾上腺铁氧还蛋白进行免疫分离。在肾上腺皮质线粒体存在的情况下,P - 450scc的前体形式被转化为一种对胰蛋白酶有抗性的形式,其分子量与成熟的P - 450scc相同。与肾上腺皮质线粒体不同,心脏线粒体无法加工P - 450scc前体,该前体保持不变且对胰蛋白酶敏感。此外,心脏线粒体的基质部分不能裂解P - 450scc前体。相反,肾上腺铁氧还蛋白前体没有表现出类似的特异性,因为它被肾上腺皮质和心脏线粒体都加工成了成熟形式。而且,肾上腺皮质线粒体并不局限于加工内源性蛋白,因为它们能导入并裂解鸟氨酸转氨甲酰酶的前体。结果表明,一些线粒体前体蛋白具有三级结构,使其能被所有线粒体识别,而其他线粒体前体蛋白具有仅能被特殊线粒体识别的结构。

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