Clemmons D R
Department of Medicine, University of North Carolina, Chapel Hill 27514.
Mol Reprod Dev. 1993 Aug;35(4):368-74; discussion 374-5. doi: 10.1002/mrd.1080350409.
The insulin-like growth factor (IGF) binding proteins (IGFBPs) have several functions, including transporting the IGFs in the circulation, mediating IGF transport out of the vascular compartment, localizing the IGFs to specific cell types, and modulating both IGF binding to receptors and growth-promoting actions. The functions of IGFBPs appear to be altered by posttranslational modifications. IGFBP-3, -4, -5, and -6 have been shown to be glycosylated. Likewise all the IGFBPs have a complex disulfide bond structure that is required for maintenance of normal IGF binding. IGFBP-2, -3, -4, and -5 are proteolytically cleaved, and specific proteases have been characterized for IGFBP-3, -4, and -5. Interestingly, attachment of IGF-I or II to IGFBP-4 results in enhancement of proteolysis, whereas attachment of either growth factor to IGFBP-5 results in inhibition of proteolytic cleavage. Cleavage of IGFBP-3 results in the appearance of a 31 kDa fragment that is 50-fold reduced in its affinity for the IGF-I or IGF-II. In spite of the reduction in its affinity, this fragment is capable of potentiating the effect of IGF-I on cell growth responses; therefore, proteolysis may be a specific mechanism that alters IGFBP modulation of IGF actions. Other processes that result in a reduction in IGF binding protein affinity are associated with potentiation of cellular responses to IGF-I and -II. Specifically, the binding of IGFBP-3 to cell surfaces is associated with its ability to enhance IGF action and with a ten- to 12-fold reduction in its affinity for IGF-I and IGF-II.(ABSTRACT TRUNCATED AT 250 WORDS)
胰岛素样生长因子(IGF)结合蛋白(IGFBP)具有多种功能,包括在循环中运输IGF、介导IGF转运出血管腔、将IGF定位于特定细胞类型,以及调节IGF与受体的结合和生长促进作用。IGFBP的功能似乎会因翻译后修饰而改变。已证明IGFBP - 3、- 4、- 5和- 6会发生糖基化。同样,所有IGFBP都具有复杂的二硫键结构,这是维持正常IGF结合所必需的。IGFBP - 2、- 3、- 4和- 5会被蛋白水解切割,并且已鉴定出针对IGFBP - 3、- 4和- 5的特定蛋白酶。有趣的是,IGF - I或II与IGFBP - 4结合会增强蛋白水解作用,而任一生长因子与IGFBP - 5结合则会抑制蛋白水解切割。IGFBP - 3的切割会产生一个31 kDa的片段,其对IGF - I或IGF - II的亲和力降低了50倍。尽管其亲和力降低,但该片段仍能够增强IGF - I对细胞生长反应的作用;因此,蛋白水解可能是一种改变IGFBP对IGF作用调节的特定机制。其他导致IGF结合蛋白亲和力降低的过程与细胞对IGF - I和- II反应的增强有关。具体而言,IGFBP - 3与细胞表面的结合与其增强IGF作用的能力以及其对IGF - I和IGF - II亲和力降低10至12倍有关。(摘要截断于250字)