Suppr超能文献

剪接介导的蛋白质变体(SpliVaP)——由于可变剪接导致蛋白质异构体之间特征变化的数据及特征描述。

Splice-mediated Variants of Proteins (SpliVaP) - data and characterization of changes in signatures among protein isoforms due to alternative splicing.

作者信息

Floris Matteo, Orsini Massimiliano, Thanaraj Thangavel Alphonse

机构信息

CRS4-Bioinformatica, Parco Scientifico e Technologico, POLARIS, Edificio 3, 09010 PULA (CA), Sardinia, Italy.

出版信息

BMC Genomics. 2008 Oct 2;9:453. doi: 10.1186/1471-2164-9-453.

Abstract

BACKGROUND

It is often the case that mammalian genes are alternatively spliced; the resulting alternate transcripts often encode protein isoforms that differ in amino acid sequences. Changes among the protein isoforms can alter the cellular properties of proteins. The effect can range from a subtle modulation to a complete loss of function.

RESULTS

(i) We examined human splice-mediated protein isoforms (as extracted from a manually curated data set, and from a computationally predicted data set) for differences in the annotation for protein signatures (Pfam domains and PRINTS fingerprints) and we characterized the differences & their effects on protein functionalities. An important question addressed relates to the extent of protein isoforms that may lack any known function in the cell. (ii) We present a database that reports differences in protein signatures among human splice-mediated protein isoform sequences.

CONCLUSION

(i) Characterization: The work points to distinct sets of alternatively spliced genes with varying degrees of annotation for the splice-mediated protein isoforms. Protein molecular functions seen to be often affected are those that relate to: binding, catalytic, transcription regulation, structural molecule, transporter, motor, and antioxidant; and the processes that are often affected are nucleic acid binding, signal transduction, and protein-protein interactions. Signatures are often included/excluded and truncated in length among protein isoforms; truncation is seen as the predominant type of change. Analysis points to the following novel aspects: (a) Analysis using data from the manually curated Vega indicates that one in 8.9 genes can lead to a protein isoform of no "known" function; and one in 18 expressed protein isoforms can be such an "orphan" isoform; the corresponding numbers as seen with computationally predicted ASD data set are: one in 4.9 genes and one in 9.8 isoforms. (b) When swapping of signatures occurs, it is often between those of same functional classifications. (c) Pfam domains can occur in varying lengths, and PRINTS fingerprints can occur with varying number of constituent motifs among isoforms - since such a variation is seen in large number of genes, it could be a general mechanism to modulate protein function. (ii)

DATA

The reported resource (at http://www.bioinformatica.crs4.org/tools/dbs/splivap/) provides the community ability to access data on splice-mediated protein isoforms (with value-added annotation such as association with diseases) through changes in protein signatures.

摘要

背景

哺乳动物基因常常发生可变剪接;由此产生的不同转录本通常编码氨基酸序列不同的蛋白质异构体。蛋白质异构体之间的变化可改变蛋白质的细胞特性。其影响范围可从细微的调控到功能的完全丧失。

结果

(i)我们检查了人类剪接介导的蛋白质异构体(从人工整理的数据集和通过计算预测的数据集提取)在蛋白质特征(Pfam结构域和PRINTS指纹)注释方面的差异,并对这些差异及其对蛋白质功能的影响进行了表征。所解决的一个重要问题涉及在细胞中可能缺乏任何已知功能的蛋白质异构体的比例。(ii)我们提供了一个数据库,该数据库报告了人类剪接介导的蛋白质异构体序列之间蛋白质特征的差异。

结论

(i)表征:这项工作指出了不同的可变剪接基因集,其对剪接介导的蛋白质异构体的注释程度各不相同。经常受到影响的蛋白质分子功能包括:结合、催化、转录调控、结构分子、转运蛋白、运动蛋白和抗氧化剂;经常受到影响的过程包括核酸结合、信号转导和蛋白质-蛋白质相互作用。蛋白质异构体之间的特征常常被包含/排除,并且长度会被截断;截断被视为主要的变化类型。分析指出了以下新方面:(a)使用人工整理的Vega数据进行的分析表明,每8.9个基因中就有一个可导致产生无“已知”功能的蛋白质异构体;每18个表达的蛋白质异构体中就有一个可能是这样的“孤儿”异构体;通过计算预测的ASD数据集看到的相应数字分别为:每4.9个基因中有一个,每9.8个异构体中有一个。(b)当特征发生交换时,通常是在相同功能分类的特征之间。(c)Pfam结构域的长度可能不同,PRINTS指纹在异构体中的组成基序数量也可能不同——由于在大量基因中都观察到这种变化,这可能是调节蛋白质功能的一种普遍机制。(ii)

数据

所报告的资源(网址为http://www.bioinformatica.crs4.org/tools/dbs/splivap/)使社区能够通过蛋白质特征的变化来访问有关剪接介导的蛋白质异构体的数据(带有诸如与疾病关联等增值注释)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e24a/2573899/926fa795f2d3/1471-2164-9-453-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验