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从花粉中分离并鉴定一种在体外能稳定玻璃态的D-7晚期胚胎丰富蛋白。

Isolation and characterization of a D-7 LEA protein from pollen that stabilizes glasses in vitro.

作者信息

Wolkers W F, McCready S, Brandt W F, Lindsey G G, Hoekstra F A

机构信息

Laboratory of Plant Physiology, School of Experimental Plant Sciences, Wageningen University, The Netherlands.

出版信息

Biochim Biophys Acta. 2001 Jan 12;1544(1-2):196-206. doi: 10.1016/s0167-4838(00)00220-x.

Abstract

A heat-soluble protein present in substantial quantities in Typha latifolia pollen was purified to homogeneity. The protein was subjected to cyanogen bromide cleavage, and the peptides produced were separated by HPLC chromatography and sequenced. The two sequences determined were found to be related to the putative D76 LEA protein from Brassica napus seeds and one of them to the D-7 LEA protein from upland cotton. This suggests the pollen protein to be a member of the LEA group III family of proteins. The secondary structure of the protein in solution and in the dry state was investigated using Fourier transform IR spectroscopy. Whereas the protein in solution was highly unordered, being largely in a random coil conformation, the conformation was largely alpha-helical after fast drying. Slow drying reversibly led to both alpha-helical and intermolecular extended beta-sheet structures. When dried in the presence of sucrose, the protein adopted alpha-helical conformation, irrespective of drying rate. The effect of the protein on the stability of sucrose glasses was also investigated. The dehydrated mixture of sucrose and the LEA protein had higher glass transition temperatures and average strength of hydrogen bonding than dehydrated sucrose alone. We suggest that LEA proteins may play a role together with sugars in the formation of a tight hydrogen bonding network in the dehydrating cytoplasm, thus conferring long-term stability.

摘要

从宽叶香蒲花粉中大量存在的一种热溶性蛋白质被纯化至同质。该蛋白质经溴化氰裂解,产生的肽段通过高效液相色谱法分离并测序。所确定的两个序列与来自甘蓝型油菜种子的假定D76胚胎发育晚期丰富蛋白相关,其中一个与来自陆地棉的D - 7胚胎发育晚期丰富蛋白相关。这表明该花粉蛋白是胚胎发育晚期丰富蛋白III族蛋白的成员。使用傅里叶变换红外光谱研究了该蛋白质在溶液中和干燥状态下的二级结构。溶液中的蛋白质高度无序,主要处于无规卷曲构象,快速干燥后构象主要为α - 螺旋。缓慢干燥可逆地导致α - 螺旋和分子间伸展的β - 折叠结构。当在蔗糖存在下干燥时,无论干燥速率如何,该蛋白质都呈现α - 螺旋构象。还研究了该蛋白质对蔗糖玻璃稳定性的影响。蔗糖和胚胎发育晚期丰富蛋白的脱水混合物比单独的脱水蔗糖具有更高的玻璃化转变温度和平均氢键强度。我们认为胚胎发育晚期丰富蛋白可能与糖类一起在脱水细胞质中紧密氢键网络的形成中发挥作用,从而赋予长期稳定性。

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