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利用一级结构分析鉴定疏水蛋白家族的新成员。

Identification of new members of hydrophobin family using primary structure analysis.

作者信息

Yang Kuan, Deng Youping, Zhang Chaoyang, Elasri Mohamed

机构信息

Department of Biological Sciences, University of SouthernMississippi, Hattiesburg, Mississippi 39406, USA.

出版信息

BMC Bioinformatics. 2006 Dec 12;7 Suppl 4(Suppl 4):S16. doi: 10.1186/1471-2105-7-S4-S16.

Abstract

BACKGROUND

Hydrophobins are fungal proteins that can turn into amphipathic membranes at hydrophilic/hydrophobic interfaces by self-assembly. The assemblages by Class I hydrophobins are extremely stable and possess the remarkable ability to change the polarity of the surface. One of its most important industrial applications is its usage as paint. Without detailed knowledge of the 3D structure and self-assembly principles of hydrophobins, it is difficult to make significant progress in furthering its research.

RESULTS

In order to provide useful information to hydrophobin researchers, we analyzed primary structure of hydrophobins to gain more insight about these proteins. In this paper, we presented an in-depth primary sequence analysis using batch BLAST search of the database, sequence filtering by programming and motif finding by MEME. We used batch BLAST to find similar sequences in the NCBI nr database. Then we used MEME to find out motifs. Based on the newly found motifs and the well-known C-CC-C-C-CC-C pattern we used MAST to search the entire nr database. At the end, domain search and phylogenetic analysis were conducted to confirm the result. After searching the nr database with the new PSSM-format motifs identified by MEME, many sequences from various species were found by MAST. Filtering process by pattern, domain and length left 9 qualified candidates.

CONCLUSION

All of 9 newly identified potential hydrophobins possess the common pattern and hydrophobin domain. From the multiple sequence alignment result, we can see that some of them are grouped very close to other known hydrophobins, which means their phylogenetic relationship is very close and it is highly plausible that they are indeed hydrophobin proteins.

摘要

背景

疏水蛋白是一类真菌蛋白,能够通过自组装在亲水/疏水界面形成两亲性膜。I类疏水蛋白形成的聚集体极其稳定,并具有改变表面极性的显著能力。其最重要的工业应用之一是用作涂料。由于缺乏对疏水蛋白三维结构和自组装原理的详细了解,进一步推进其研究很难取得重大进展。

结果

为了给疏水蛋白研究人员提供有用信息,我们分析了疏水蛋白的一级结构,以便更深入地了解这些蛋白质。在本文中,我们通过批量BLAST搜索数据库、编程进行序列过滤以及使用MEME查找基序,对一级序列进行了深入分析。我们使用批量BLAST在NCBI nr数据库中查找相似序列。然后我们使用MEME找出基序。基于新发现的基序和著名的C-CC-C-C-CC-C模式,我们使用MAST搜索整个nr数据库。最后,进行结构域搜索和系统发育分析以确认结果。使用MEME识别的新PSSM格式基序搜索nr数据库后,MAST发现了来自各种物种的许多序列。通过模式、结构域和长度进行过滤后,留下了9个合格的候选序列。

结论

新鉴定出的9个潜在疏水蛋白均具有共同模式和疏水蛋白结构域。从多序列比对结果可以看出,其中一些与其他已知疏水蛋白的聚类非常接近,这意味着它们的系统发育关系非常密切,它们确实是疏水蛋白的可能性很高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f997/1780129/22cb3151c199/1471-2105-7-S4-S16-1.jpg

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