Phd7faster: Predicting Clones Propagating Faster from the pH.D.-7 phage Display peptide Library
نویسندگان
چکیده
Phage display can rapidly discover peptides binding to any given target; thus, it has been widely used in basic and applied research. Each round of panning consists of two basic processes: Selection and amplification. However, recent studies have showed that the amplification step would decrease the diversity of phage display libraries due to different propagation capacity of phage clones. This may induce phages with growth advantage rather than specific affinity to appear in the final experimental results. The peptides displayed by such phages are termed as propagation-related target-unrelated peptides (PrTUPs). They would mislead further analysis and research if not removed. In this paper, we describe PhD7Faster, an ensemble predictor based on support vector machine (SVM) for predicting clones with growth advantage from the Ph.D.-7 phage display peptide library. By using reduced dipeptide composition (ReDPC) as features, an accuracy (Acc) of 79.67% and a Matthews correlation coefficient (MCC) of 0.595 were achieved in 5-fold cross-validation. In addition, the SVM-based model was demonstrated to perform better than several representative machine learning algorithms. We anticipate that PhD7Faster can assist biologists to exclude potential PrTUPs and accelerate the finding of specific binders from the popular Ph.D.-7 library. The web server of PhD7Faster can be freely accessed at http://immunet.cn/sarotup/cgi-bin/PhD7Faster.pl.
منابع مشابه
Discovery of Novel Peptidomimetics for Brain-Derived Neurotrophic Factor using Phage Display Technology
Brain-Derived Neurotrophic Factor (BDNF) is a neuroprotectant candidate for neurodegenerative diseases. However, there are several clinical concerns about its therapeutic applications. In the current study, we selected BDNF-mimicking small peptides from phage-displayed peptide library as alternative molecules to the clinical challenges. The peptide library was screened against BDNF receptor (Ne...
متن کاملPuzzling Peptides from a Phage Display Library
The commercial availability of random peptide libraries displayed on the M13 phage is increasing their use forstudies on epitope identification, enzyme inhibitors, receptor ligands, etc. In this study two experimentswhere planned for selection of peptides. First with sheep antibodies, the positive selector was IgG, preparedon Protein G column from a pool of 11 sheeps immunized...
متن کاملIdentification of a peptide specifically targeting ovarian cancer by the screening of a phage display peptide library
Ovarian cancer is the most common cause of cancer-associated mortality in terms of gynecological malignancies, and is difficult to diagnose due to the absence of reliable biomarkers. To identify ovarian cancer-specific biomarkers, the present study used a Ph.D.-7™ Phage Display Peptide Library to screen for ligands that selectively target HO-8910 ovarian cancer cells. Following 5 rounds of biop...
متن کاملانتخاب اختصاصی فاژهای حاوی قطعه آنتیبادی به کمک پروتئین A در تکنیک کتابخانه آنتیبادی فاژ
Background and purpose: Antibody phage display library is a powerful in vitro technology for production of recombinant antibody fragments against a wide variety of antigens. However, the presence of insert-free clones in the phage libraries limited the specific enrichment of antibody fragments in many studies. The aim of this study was to protein A-aided recovery of insert-containing phages in ...
متن کاملNovel peptide screened from a phage display library antagonizes the activity of CC chemokine receptor 9
CC chemokine receptor 9 (CCR9) serves a role in the drug resistance and metastasis of tumors. In the present study, a peptide specifically bound to CCR9 was obtained and the effect on tumor cells was observed. A Ph.D.-12 phage display peptide library was used to screen for peptides binding specifically to the second extracellular loop of CCR9. The ratios of the input and output of phage clones ...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Journal of bioinformatics and computational biology
دوره 12 1 شماره
صفحات -
تاریخ انتشار 2014