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Complex regulation of plasminogen activator inhibitor type-1 (PAI-1) gene expression by serum and substrate adhesion

机译:血清和底物黏附对纤溶酶原激活物抑制剂1型(PAI-1)基因表达的复杂调控

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pExpression of plasminogen activator inhibitor type-1 (PAI-1), a member of the serine protease inhibitor (SERPIN) superfamily that functions to negatively regulate the plasmin-based pericellular proteolytic cascade, was induced early after exposure of growth-arrested normal rat kidney (NRK) cells to serum-containing medium. Increased PAI-1 transcription was rapid (evident within 10 min of serum addition) and involved immediate-early response kinetics. [sup3/supH]Thymidine autoradiography was used to map the time frame of PAI-1 expression during a synchronous growth cycle. PAI-1 transcript accumulation peaked in mid-Gsub1/sub phase (approx. 4–6 h post-stimulation) and declined prior to, or concomitant with, the onset of DNA synthetic phase. Serum increased PAI-1 expression in NRK cells in agarose suspension, as well as monolayer, culture; induction in suspended cells (similar to monolayer culture conditions) also occurred in the presence of cyclohexamide or puromycin. The serum-inductive pathway leading to PAI-1 gene activation is thus functional regardless of adhesive conditions or capacity for ide novo/i protein synthesis. The amplitude of induction and maintenance of expression in later stages of Gsub1/sub, however, were subject to adhesive influences. PAI-1 transcript accumulation at 4 and 8 h post-stimulation in newly adherent cells, moreover, was blocked by puromycin, indicating that both immediate-early and secondary mechanisms regulate PAI-1 mRNA levels during progression of NRK cells through an ‘activated’ Gsub1/sub growth phase./p
机译:>丝裂酶原激活物抑制剂1型(PAI-1)是丝氨酸蛋白酶抑制剂(SERPIN)超家族的一员,该酶的功能是负调控基于纤溶酶的细胞周围蛋白水解级联反应。正常大鼠肾脏(NRK)细胞至含血清的培养基。 PAI-1转录增加迅速(在添加血清10分钟内可见),并涉及立即早期反应动力学。 [ 3 H]胸腺嘧啶放射自显影用于定位同步生长周期中PAI-1表达的时间框架。 PAI-1转录物积累在G 1 中期(刺激后约4-6小时)达到峰值,并在DNA合成期开始之前或同时下降。血清在琼脂糖悬浮液以及单层培养物中增加了NRK细胞中PAI-1的表达;在存在环己酰胺或嘌呤霉素的情况下,还可以在悬浮细胞中诱导(类似于单层培养条件)。因此,无论粘着条件如何或从头合成蛋白质的能力如何,导致PAI-1基因活化的血清诱导途径都是有功能的。然而,G 1 后期的诱导和维持表达的幅度受到粘附的影响。此外,嘌呤霉素阻断了新粘附细胞在刺激后4和8小时PAI-1转录物的积累,表明在NRK细胞进程中,早期和次级机制都通过“活化”调节PAI-1 mRNA水平。 G 1 生长期。

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