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硫酸乙酰肝素蛋白聚糖控制血管平滑肌细胞中碱性成纤维细胞生长因子的细胞内加工过程。

Heparan sulfate proteoglycans control intracellular processing of bFGF in vascular smooth muscle cells.

作者信息

Sperinde G V, Nugent M A

机构信息

Department of Biochemistry, Boston University School of Medicine, Massachusetts 02118, USA.

出版信息

Biochemistry. 1998 Sep 22;37(38):13153-64. doi: 10.1021/bi980600z.

Abstract

Basic fibroblast growth factor (bFGF) is a potent mitogen for vascular smooth muscle cells (VSMC) and has been implicated in a number of vascular disorders. bFGF interacts with high-affinity receptors and heparan sulfate proteoglycans (HSPG) at the cell surface. HSPG have been demonstrated to enhance bFGF binding to its receptors, yet no known role for HSPG in modulating postbinding events has been identified. In the present study, we analyzed bFGF internalization, intracellular distribution, degradation, and stimulation of DNA synthesis within native and HSPG-deficient VSMC. HSPG-deficient VSMC were generated by treating cells with sodium chlorate to inhibit the sulfation of HSPG. We found that stimulation of DNA synthesis by bFGF in chlorate-treated VSMC was markedly reduced as compared with native cells, even at doses of bFGF where receptor binding was similar in the two conditions. This was not a general lack of mitogenic potential, as the addition of calf serum, or epidermal growth factor, stimulated DNA synthesis to a similar extent in native and chlorate-treated cells. Analysis of the accumulation of internalized bFGF within cytoplasmic and nuclear fractions of native and HSPG-deficient VSMC showed striking differences. At early time points (0-2 h), nearly identical amounts of bFGF were observed in the cytoplasmic fractions under both conditions, yet significant amounts of bFGF were only found in the nuclear fractions of native cells. At later time points (2-48 h), the amount of cytoplasmic bFGF was significantly greater in the native compared to HSPG-deficient cells, and nuclear deposition of bFGF began to reach similar levels under both conditions. Furthermore, the intracellular half-life of bFGF was dramatically prolonged in native compared to HSPG-deficient cells, in part, due to decreased bFGF degradation in native cells. Thus, HSPG appears to accelerate nuclear localization, increase cytoplasmic capacity, and inhibit intracellular degradation of bFGF in VSMC. Modulation of intracellular processing of bFGF by HSPG might control the biological activity of bFGF in VSMC.

摘要

碱性成纤维细胞生长因子(bFGF)是血管平滑肌细胞(VSMC)的一种强效促有丝分裂原,并与多种血管疾病有关。bFGF在细胞表面与高亲和力受体和硫酸乙酰肝素蛋白聚糖(HSPG)相互作用。已证明HSPG可增强bFGF与其受体的结合,但尚未确定HSPG在调节结合后事件中的已知作用。在本研究中,我们分析了天然和HSPG缺陷型VSMC中bFGF的内化、细胞内分布、降解以及对DNA合成的刺激作用。通过用氯酸钠处理细胞以抑制HSPG的硫酸化来产生HSPG缺陷型VSMC。我们发现,与天然细胞相比,氯酸钠处理的VSMC中bFGF对DNA合成的刺激作用明显降低,即使在两种条件下受体结合相似的bFGF剂量下也是如此。这并非普遍缺乏促有丝分裂潜力,因为添加小牛血清或表皮生长因子在天然细胞和氯酸钠处理的细胞中对DNA合成的刺激程度相似。对天然和HSPG缺陷型VSMC的细胞质和细胞核部分内化bFGF的积累分析显示出显著差异。在早期时间点(0 - 2小时),在两种条件下细胞质部分中观察到的bFGF量几乎相同,但仅在天然细胞的细胞核部分中发现大量bFGF。在后期时间点(2 - 48小时),与HSPG缺陷型细胞相比,天然细胞中细胞质bFGF的量显著增加,并且在两种条件下bFGF的核沉积开始达到相似水平。此外,与HSPG缺陷型细胞相比,天然细胞中bFGF的细胞内半衰期显著延长,部分原因是天然细胞中bFGF降解减少。因此,HSPG似乎加速了bFGF的核定位,增加了细胞质容量,并抑制了VSMC中bFGF的细胞内降解。HSPG对bFGF细胞内加工的调节可能控制bFGF在VSMC中的生物学活性。

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