首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Protease-resistant form of insulin-like growth factor-binding protein 5 is an inhibitor of insulin-like growth factor-I actions on porcine smooth muscle cells in culture.
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Protease-resistant form of insulin-like growth factor-binding protein 5 is an inhibitor of insulin-like growth factor-I actions on porcine smooth muscle cells in culture.

机译:胰岛素样生长因子结合蛋白5的蛋白酶抗性形式是胰岛素样生长因子-I作用于培养的猪平滑肌细胞的抑制剂。

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摘要

IGFs are pleiotrophic mitogens for porcine smooth muscle cells (pSMC) in culture. The effects of IGFs on cells are modulated by various insulin-like growth factor-binding proteins (IGFBP). IGFBP-5 is synthesized by pSMC and binds to the extracellular matrix. However, IGFBP-5 is also secreted into conditioned medium of cultured cells and is cleaved into fragments by a concomitantly produced protease. These fragments have reduced affinity for the IGFs and cleavage makes it difficult to assess the role of intact IGFBP-5. To study the consequence of accumulation of intact IGFBP-5 in medium, we determined the cleavage site in IGFBP-5 and prepared a protease resistant mutant. Amino acid sequencing of purified IGFBP-5 fragments suggested Arg138-Arg139 as the primary cleavage site. Arg138-Arg139-->Asn138-Asn139 mutations were introduced to create protease-resistant IGFBP-5, which has the same affinity for IGF-I as the native protein. This mutant IGFBP-5 remained intact even after 24 h of incubation and it inhibited several IGF-I actions when added to pSMC culture medium. The mutant IGFBP-5 (500 ng/ml) decreased IGF-I stimulated cellular DNA synthesis by 84%, protein synthesis by 77%, and it inhibited IGF-I stimulated migration of pSMC by 77%. It also inhibited IGF-I stimulation of IRS-1 phosphorylation. In contrast, the same amount of native IGFBP-5 did not inhibit IGF-I actions. The significance of inhibitory effects of the protease resistant IGFBP-5 was further demonstrated in pSMC transfected with mutant or native IGFBP-5 cDNAs. The mutant IGFBP-5 accumulated in culture medium of transfected cells, while native IGFBP-5 was degraded into fragments, PSMC overexpressing the mutant IGFBP-5 also responded poorly to IGF-I compared with mock transfected cells. IGF-I (5 ng/ml) increased [35S]methionine incorporation into control cells by 36% above the basal level, but it did not significantly change (4%) in pSMC cultures that were producing the mutant IGFBP-5. In conclusion, the accumulation of protease-resistant IGFBP-5 in the medium was inhibitory to IGF-I actions on pSMC. This suggests that proteolysis can prevent IGFBP-5 from acting as an inhibitor of IGF-I-stimulated effects and that it serves as an important mechanism for regulating cellular responsiveness to IGF-I.
机译:IGF是培养中的猪平滑肌细胞(pSMC)的多营养促分裂原。 IGF对细胞的作用受到各种胰岛素样生长因子结合蛋白(IGFBP)的调节。 IGFBP-5由pSMC合成,并与细胞外基质结合。但是,IGFBP-5也被分泌到培养细胞的条件培养基中,并被伴随产生的蛋白酶切割成片段。这些片段对IGF的亲和力降低,切割使评估完整IGFBP-5的作用变得困难。为了研究完整IGFBP-5在培养基中积累的结果,我们确定了IGFBP-5中的切割位点,并制备了蛋白酶抗性突变体。纯化的IGFBP-5片段的氨基酸测序表明,Arg138-Arg139为主要切割位点。引入了Arg138-Arg139-> Asn138-Asn139突变来创建耐蛋白酶的IGFBP-5,该蛋白对IGF-1的亲和力与天然蛋白相同。即使在孵育24小时后,该突变型IGFBP-5仍保持完整,当添加到pSMC培养基中时,它会抑制几种IGF-I的作用。突变型IGFBP-5(500 ng / ml)使IGF-I刺激的细胞DNA合成减少了84%,使蛋白质合成减少了77%,并且抑制了IGF-I刺激的pSMC迁移了77%。它还抑制了IGF-1对IRS-1磷酸化的刺激。相反,相同量的天然IGFBP-5不抑制IGF-1作用。在用突变或天然IGFBP-5 cDNA转染的pSMC中进一步证明了蛋白酶抗性IGFBP-5抑制作用的重要性。突变型IGFBP-5积累在转染细胞的培养基中,而天然IGFBP-5降解成碎片,过表达突变型IGFBP-5的PSMC与模拟转染细胞相比,对IGF-1的反应也较差。 IGF-1(5 ng / ml)使[35S]蛋氨酸向对照细胞的掺入量比基础水平增加了36%,但在产生突变型IGFBP-5的pSMC培养物中却没有显着变化(4%)。总之,耐蛋白酶的IGFBP-5在培养基中的积累抑制了IGF-I对pSMC的作用。这表明蛋白水解可以阻止IGFBP-5充当IGF-I刺激作用的抑制剂,并且它是调节细胞对IGF-I应答的重要机制。

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