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丝状噬菌体fd的拉曼光谱和氘交换

Raman spectroscopy and deuterium exchange of the filamentous phage fd.

作者信息

Williams R W, Dunker A K, Peticolas W L

出版信息

Biochim Biophys Acta. 1984 Dec 7;791(2):131-44. doi: 10.1016/0167-4838(84)90003-7.

Abstract

The filamentous phage fd has been investigated using the techniques of Raman spectroscopy and deuterium exchange. Despite the rather uniform secondary structure of the fd phage coat protein, which is predominantly alpha-helix, the deuterium exchange is complex. A substantial fraction of the helical peptides exchange deuterium by 8 h at room temperature, yet another substantial fraction does not exchange following an additional 5 months at 4 degrees C. Heating the phage to 70 degrees C for several hours leads to additional deuterium exchange compared to samples soaked for 5 months in heavy water. We suggest that the wide variation in peptide exchange rates may be related to the phage protein quaternary structure, which has been shown to be a double layer of tightly packed helices. The accomplishment of enhanced exchange by reaction at high temperature combined with digital difference spectroscopic methods has enabled us to define the structure of the amide III and III' bands. The complexity of these bands is unexpected for a simple helical protein, but we suggest that the complexity arises at least in part from end-effects that become important in short alpha-helices.

摘要

丝状噬菌体fd已通过拉曼光谱和氘交换技术进行了研究。尽管fd噬菌体外壳蛋白的二级结构相当均匀,主要为α-螺旋,但氘交换过程却很复杂。相当一部分螺旋肽在室温下8小时内就会发生氘交换,然而另一相当大的部分在4℃下再放置5个月后仍未发生交换。与在重水中浸泡5个月的样品相比,将噬菌体加热到70℃数小时会导致更多的氘交换。我们认为,肽交换速率的广泛差异可能与噬菌体蛋白质的四级结构有关,该结构已被证明是由紧密堆积的螺旋组成的双层结构。通过高温反应结合数字差分光谱方法实现的增强交换,使我们能够确定酰胺III和III'带的结构。对于一种简单的螺旋蛋白来说,这些带的复杂性是出乎意料的,但我们认为这种复杂性至少部分源于在短α-螺旋中变得重要的末端效应。

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