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鸡角膜的体外发育:pH值对胶原蛋白组装的多种影响。

Chick corneal development in vitro: diverse effects of pH on collagen assembly.

作者信息

Bard J B, Hulmes D J, Purdom I F, Ross A S

机构信息

MRC Human Genetics Unit, Western General Hospital, Edinburgh, UK.

出版信息

J Cell Sci. 1993 Aug;105 ( Pt 4):1045-55. doi: 10.1242/jcs.105.4.1045.

Abstract

In vivo, the embryonic chick corneal epithelium lays down a stroma of collagen and proteoglycans whose fibrils are unusual as their diameter distribution peaks sharply about a mean of 20 nm. Such epithelia cultured on Nuclepore filters will also lay down a stroma containing 20 nm diameter fibrils, although there is only limited orthogonal organisation. We report here that collagen fibril morphology is critically dependent on the pH of the medium in which the corneal epithelium is cultured and that normal 20 nm diameter fibrils only assemble in a narrow band around neutral pH (approx. 6.9-7.4). At higher pH (7.6-8.1), fibrils in the distal region of the stroma more closely resemble those seen in non-corneal stroma as their diameters can be up to 200 nm even though fibrils near the basal lamina are only about 10 nm in diameter. At low pH (approx. 6.5), there are again wide fibrils, but with the hieroglyphic cross-sections typical of those seen in heritable disorders of N-terminal procollagen processing. Biochemical analysis by SDS-PAGE and fluorography confirms that N-terminal procollagen processing is deficient at this pH. At very low pH (approx. 5.8-6.2), there is little processing of procollagen and the stroma comprises filamentous material with the occasional banded structures typical of those formed by unprocessed procollagen at high concentration. Gel electrophoresis and peptide mapping showed that the collagens produced by the corneal epithelium of the primary stroma included types I, II and V and that total collagen production, as assessed by incorporation of [3H]proline, increased with pH, although the relative amounts of the different collagens produced remained essentially unchanged. While the biochemical data can account for the altered morphologies in the pH range 5.8 to 7.0, the sensitivity of fibril diameter to small changes around neutral pH remains unexplained, but points to the subtle, charge-based interactions necessary for the formation of 20 nm diameter fibrils in the developing cornea.

摘要

在体内,胚胎期鸡角膜上皮会形成由胶原蛋白和蛋白聚糖构成的基质,其纤维的直径分布在约20纳米的平均值处急剧达到峰值,这种纤维很不寻常。在核孔滤膜上培养的此类上皮也会形成含有直径为20纳米纤维的基质,尽管其正交排列有限。我们在此报告,胶原纤维形态严重依赖于培养角膜上皮的培养基的pH值,正常直径为20纳米的纤维仅在接近中性pH(约6.9 - 7.4)的狭窄范围内组装。在较高pH(7.6 - 8.1)时,基质远端区域的纤维更类似于非角膜基质中的纤维,因为其直径可达200纳米,尽管靠近基底层的纤维直径仅约10纳米。在低pH(约6.5)时,同样存在宽纤维,但具有N端前胶原加工遗传性疾病中典型的象形横截面。通过SDS - PAGE和荧光自显影进行的生化分析证实,在此pH值下N端前胶原加工存在缺陷。在非常低的pH(约5.8 - 6.2)时,前胶原几乎没有加工,基质由丝状物质组成,偶尔有高浓度未加工前胶原形成的典型带状结构。凝胶电泳和肽图谱分析表明,初级基质的角膜上皮产生的胶原蛋白包括I型、II型和V型,并且通过[³H]脯氨酸掺入评估的总胶原蛋白产量随pH值升高而增加,尽管产生的不同胶原蛋白的相对量基本保持不变。虽然生化数据可以解释pH值在5.8至7.0范围内形态的改变,但纤维直径对中性pH附近小变化的敏感性仍无法解释,但这表明在发育中的角膜中形成直径为20纳米的纤维需要微妙的基于电荷的相互作用。

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