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关于硅藻二氧化硅壳形成的生物化学和精细结构的研究:角毛藻中羟脯氨酸和二羟脯氨酸的形成。

Studies on the biochemistry and fine structure of silica shell formation in diatoms : Formation of hydroxyproline and dihydroxyproline in Nitzschia angularis.

机构信息

Scripps Institution of Oceanography, University of California, San Diego, 92093, La Jolla, CA, USA.

出版信息

Planta. 1977 Jan;135(1):7-11. doi: 10.1007/BF00387968.

Abstract

In diatoms, the siliceous cell walls are enveloped by an organic component which includes 4-hydroxyproline and 3,4-dihydroxy-L-proline. The formation of these two amino acids were studied in Nitzschia angularis in Si-starvation synchrony. Both appear to arise from peptidyl proline. Its conversion to peptidyl hydroxyproline was shown in cell-free extracts and in kinetic studies using [(14)C]proline. Two lines of evidence indicate that dihydroxyproline does not arise from the further hydroxylation of peptidyl hydroxyproline: First, there was a lag of several minutes between the incorporation of [(14)C]proline into protein and the appearance therein of [(14)C]hydroxyproline but no such lag for the appearance of dihydroxyproline. Second, α,α'-dipyridyl blocked the formation of hydroxyproline, but not of dihydroxypyroline, from peptidyl proline. Cell walls made in the presence of dipyridyl differed little in overall chemical composition from walls made in its absence and were morphologically identical. [(14)C]dehydroproline was rapidly metabolized in the cells, with [(14)C]dihydroxyproline a prominent product. Studies of the conversion of [(14)C]proline to [(14)C]hydroxyproline at various stages of wall formation showed an increased synthesis of [(14)C]dihydroxyproline at the end of cell separation.

摘要

在硅藻中,硅质细胞壁被一层有机成分所包裹,其中包括 4-羟脯氨酸和 3,4-二羟-L-脯氨酸。本研究以 Nitzschia angularis 为材料,在硅饥饿同步培养中对这两种氨基酸的形成进行了研究。这两种氨基酸似乎都来源于肽基脯氨酸。在无细胞提取物中以及使用 [(14)C]脯氨酸进行的动力学研究中,均证实其可以转化为肽基羟脯氨酸。有两条证据表明二羟脯氨酸不是由肽基羟脯氨酸进一步羟化产生的:首先,[(14)C]脯氨酸掺入蛋白质与其中 [(14)C]羟脯氨酸出现之间存在几分钟的延迟,但二羟脯氨酸的出现没有这种延迟。其次,α,α'-二吡啶阻断了肽基脯氨酸形成羟脯氨酸,但不形成二羟吡咯烷。在用二吡啶存在下合成的细胞壁与不存在二吡啶时合成的细胞壁在整体化学成分上差异不大,并且形态上完全相同。[(14)C]脱氢脯氨酸在细胞内迅速代谢,[(14)C]二羟脯氨酸是主要产物。在细胞壁形成的不同阶段研究 [(14)C]脯氨酸转化为 [(14)C]羟脯氨酸的情况表明,在细胞分离结束时,[(14)C]二羟脯氨酸的合成增加。

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