Formation of 150-kDa binary complexes on insulin-like growth factor binding protein-3 and the acid-labile subunit in vitro and in vivo

C. Young Lee, Matthew M. Rechler
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引用次数: 10

Abstract

Adult rat serum contains two types of 150-kDa IGFBP complexes: ternary complexes containing bound IGF-I, intact IGFBP-3 and the acid-labile subunit (ALS), and binary complexes that contain ALS and proteolytically-nicked IGFBP-3 but which lack bound IGF. We present evidence that the binary complexes containing proteolytically-nicked IGFBP-3 can be formed in two ways: by direct association of IGFBP-3 with ALS in the absence of IGF, and by proteolysis of IGFBP-3 within 150-kDa ternary complexes, resulting in increased dissociation of IGF-I. The relative contributions of the two mechanisms is unknown. Preliminary results indicate that binary complexes also can form in vivo. Proteolysis of IGFBP-3 in the 150-kDa ternary complex provides a regulatable mechanism by which IGF-I may be mobilized from the circulating reservoir of 150-kDa complexes to the tissues.

胰岛素样生长因子结合蛋白-3和酸不稳定亚基在体外和体内形成150 kda二元复合物
成年大鼠血清中含有两种150 kda的IGFBP复合物:含有结合的IGF- 1、完整的IGFBP-3和酸不稳定亚基(ALS)的三元复合物,以及含有ALS和蛋白水解缺口的IGFBP-3但缺乏结合的IGF的二元复合物。我们提供的证据表明,含有蛋白水解缺口的IGFBP-3的二元复合物可以通过两种方式形成:在缺乏IGF的情况下,IGFBP-3与ALS直接关联,以及在150 kda的三元复合物中对IGFBP-3进行蛋白水解,从而增加IGF- i的解离。这两种机制的相对作用尚不清楚。初步结果表明,二元配合物也可在体内形成。IGFBP-3在150 kda三元复合物中的蛋白水解提供了一种可调节的机制,通过该机制igf - 1可以从150 kda复合物的循环储库中被动员到组织中。
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