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横纹金蛛主壶腹腺丝腺的碳-13核磁共振谱

13C NMR of Nephila clavipes major ampullate silk gland.

作者信息

Hijirida D H, Do K G, Michal C, Wong S, Zax D, Jelinski L W

机构信息

Center for Advanced Technology in Biotechnology, Cornell University, Ithaca, New York 14853, USA.

出版信息

Biophys J. 1996 Dec;71(6):3442-7. doi: 10.1016/S0006-3495(96)79539-5.

Abstract

The major ampullate glands of the spider Nephila clavipes contain approximately 0.2 microliter each of a highly concentrated (approximately 50%) solution of silk fibroin. Therefore, the reservoir of silk in these glands presents an ideal opportunity to observe prefolded conformations of a protein in its native state. To this end, the structure and conformation of major ampullate gland silk fibroin within the glands of the spider N. clavipes were examined by 13C NMR spectroscopy. These results were compared to those from silk protein first drawn from the spinneret and then denatured. The 13C NMR chemical shifts, along with infrared and circular dichroism data, suggest that the silk fibroin in the glands exists in dynamically averaged helical conformations. Furthermore, there is no evidence of proline residues in U-(13)C-D-glucose-labeled silk. This transient prefolded "molten fibril" state may correspond to the silk I form found in Bombyx mori silk. There is no evidence of the final beta-sheet structure in the ampullate gland silk fibroin before final silk processing. However, the conformation of silk in the glands appears to be in a highly metastable state, as plasticization with water produces the beta-sheet structure. Therefore, the ducts connecting the ampullate glands to the spinnerets play a larger role in silk processing than previously thought.

摘要

横纹金蛛的主壶腹腺每个都含有约0.2微升高度浓缩(约50%)的丝心蛋白溶液。因此,这些腺体中的丝储存库为观察天然状态下蛋白质的预折叠构象提供了理想的机会。为此,通过13C核磁共振光谱对横纹金蛛腺体中的主壶腹腺丝心蛋白的结构和构象进行了研究。将这些结果与首先从纺丝管抽出然后变性的丝蛋白的结果进行了比较。13C核磁共振化学位移以及红外和圆二色性数据表明,腺体中的丝心蛋白以动态平均的螺旋构象存在。此外,在U-(13)C-D-葡萄糖标记的丝中没有脯氨酸残基的证据。这种短暂的预折叠“熔解原纤维”状态可能对应于家蚕丝中发现的丝I型。在最终的丝加工之前,壶腹腺丝心蛋白中没有最终β折叠结构的证据。然而,腺体中丝的构象似乎处于高度亚稳态,因为用水增塑会产生β折叠结构。因此,连接壶腹腺和纺丝管的导管在丝加工中所起的作用比以前认为的更大。

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