胃足类软体动物haaliotis tuberculata血细胞中igf - 1新生合成的胶原蛋白研究和调控。

Journal of Experimental Zoology Pub Date : 2000-09-01
A Serpentini, C Ghayor, J M Poncet, V Hebert, P Galéra, J P Pujol, E Boucaud-Camou, J M Lebel
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引用次数: 0

摘要

为了证明胶原蛋白的合成,并确定哪一种类型的胶原蛋白存在于软体动物结核性结缔组织的血细胞中,我们采用了三种不同的方法,即通过培养细胞重新合成、免疫方法和northern blot分析。我们首先证明,在标记40小时后,培养血细胞细胞层中胶原蛋白的重新合成占总[(3)H]脯氨酸标记蛋白合成的9.48 +/- 1.25%。此外,IGF-I在10(-10)至10(-8)M范围内以剂量依赖的方式诱导培养血细胞中胶原合成的显著刺激,最大刺激(10(-9)M)诱导与100%对照相比增加286 +/- 56%。通过免疫细胞化学和免疫印迹,我们发现血细胞对针对I型纤维胶原的抗体存在免疫反应分子。此外,利用与人类前α 1(I)胶原cDNA对应的Hf 677作为探针,该探针包含在所有后生动物中发现的(Gly-X-Y)重复序列,检测到四个长度约为6.4,5,2.2和2 kb的胶原转录本。这些数据表明,在血细胞中存在纤维状I型胶原,并与这些细胞参与细胞外基质沉积的概念相一致,细胞外基质沉积是组织修复和发育过程中的主要功能。我们的模型可能成为研究生长因子对软体动物血细胞胶原合成调节作用的一个很好的系统。[j] .生物医学工程学报,2007(7):387 - 398。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Collagen study and regulation of the de novo synthesis by IGF-I in hemocytes from the gastropod mollusc, Haliotis tuberculata.

To evidence a collagen synthesis and identify which type(s) of collagen is present in hemocytes from the mollusc Haliotis tuberculata, we have performed three separate approaches, namely, de novo synthesis by cultured cells, immunological approaches, and northern blot analysis. We demonstrated first that after 40-hr labeling, the de novo synthesis of collagen in the cell layer of cultured hemocytes represents 9.48 +/- 1.25% with respect to the total [(3)H]proline-labeled protein synthesis. In addition, IGF-I elicited a significant stimulation of collagen synthesis in cultured hemocytes in a dose-dependent manner from 10(-10) to 10(-8) M. The maximal stimulation (10(-9) M) induced an increase of 286 +/- 56% with respect to 100% control. By immunocytochemistry and immunoblotting, we showed that hemocytes present immunoreactive molecules to antibodies directed against the type I fibrillar collagen. In addition, using as a probe Hf 677 corresponding to a human pro alpha1(I) collagen cDNA and which encompasses the (Gly-X-Y) repeated sequence found in all Metazoa, four collagen transcripts of approximately 6.4, 5, 2.2, and 2 kb in length have been detected. These data suggest the presence of fibrillar type I collagen in hemocytes and are compatible with the concept that these cells are involved in the extracellular matrix deposition, a cardinal function in tissue repair as well as in developmental processes. Our model may appear as an excellent system to study the role of growth factors on the regulation of collagen synthesis by molluscan hemocytes. J. Exp. Zool. 287:275-284, 2000.

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