The influence of flanking secondary structures on amino Acid content and typical lengths of 3/10 helices.

International journal of proteomics Pub Date : 2014-01-01 Epub Date: 2014-10-13 DOI:10.1155/2014/360230
Vladislav Victorovich Khrustalev, Eugene Victorovich Barkovsky, Tatyana Aleksandrovna Khrustaleva
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引用次数: 17

Abstract

We used 3D structures of a highly redundant set of bacterial proteins encoded by genes of high, average, and low GC-content. Four types of connecting bridges-regions situated between any of two major elements of secondary structure (alpha helices and beta strands)-containing a pure random coil were compared with connecting bridges containing 3/10 helices. We included discovered trends in the original "VVTAK Connecting Bridges" algorithm, which is able to predict more probable conformation for a given connecting bridge. The highest number of significant differences in amino acid usage was found between 3/10 helices containing bridges connecting two beta strands (they have increased Phe, Tyr, Met, Ile, Leu, Val, and His usages but decreased usages of Asp, Asn, Gly, and Pro) and those without 3/10 helices. The typical (most common) length of 3/10 helices situated between two beta strands and between beta strand and alpha helix is equal to 5 amino acid residues. The preferred length of 3/10 helices situated between alpha helix and beta strand is equal to 3 residues. For 3/10 helices situated between two alpha helices, both lengths (3 and 5 amino acid residues) are typical.

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侧翼二级结构对氨基酸含量和典型3/10螺旋长度的影响。
我们使用了一组高度冗余的细菌蛋白质的三维结构,这些蛋白质由高、平均和低gc含量的基因编码。四种类型的连接桥-位于二级结构的两个主要元素(α螺旋和β链)之间的区域-包含一个纯随机线圈与包含3/10螺旋的连接桥进行了比较。我们在原始的“VVTAK连接桥梁”算法中包含了发现的趋势,该算法能够预测给定连接桥梁的更可能构象。在含有连接两条β链的桥的3/10螺旋和没有3/10螺旋的氨基酸使用上发现了最大数量的显著差异(它们增加了Phe、Tyr、Met、Ile、Leu、Val和His的使用,但减少了Asp、Asn、Gly和Pro的使用)。典型的(最常见的)长度为3/10的螺旋位于两条链之间和链和螺旋之间等于5个氨基酸残基。位于α螺旋和β链之间的3/10螺旋的优先长度等于3个残基。对于位于两个α螺旋之间的3/10螺旋,两种长度(3和5个氨基酸残基)都是典型的。
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