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SPENCER
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A comprehensive database for small peptides encoded by ncRNA in cancer patients
ID:10055Uploader:黄元泰
2021.09.15
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Abstract
As an increasing number of noncoding RNAs (ncRNAs) have been suggested to encode short bioactive peptides in cancer, the exploration of ncRNA-encoded small peptides (ncPEPs) is emerging as a fascinating field in cancer research. To assist in studies on the regulatory mechanisms of ncPEPs, we describe here a database called SPENCER (http://spencer.renlab.org). Currently, SPENCER has collected a total of 2806 mass spectrometry (MS) data points from 55 studies, covering 1007 tumor samples and 719 normal samples. Using an MS-based proteomics analysis pipeline, SPENCER identified 29 526 ncPEPs across 15 different cancer types. Specifically, 22 060 of these ncPEPs were experimentally validated in other studies. By comparing tumor and normal samples, the identified ncPEPs were divided into four expression groups: tumor-specific, upregulated in cancer, downregulated in cancer, and others. Additionally, since ncPEPs are potential targets for neoantigen-based cancer immunotherapy, SPENCER also predicted the immunogenicity of all the identified ncPEPs by assessing their MHC-I binding affinity, stability, and TCR recognition probability. As a result, 4497 ncPEPs curated in SPENCER were predicted to be immunogenic. Overall, SPENCER will be a useful resource for investigating cancer-associated ncPEPs and may boost further research in cancer.
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Publication
SPENCER: a comprehensive database for small peptides encoded by noncoding RNAs in cancer patients
Xiaotong Luo,Yuantai Huang,Huiqin Li,Yihai Luo,Zhixiang Zuo,Jian Ren,Yubin XieNucleic Acids Research. 2022
Cited by 64 articles
Non-coding RNAs in disease: from mechanisms to therapeutics
Kinga Nemeth, Recep Bayraktar, Manuela Ferracin, George A. Calin Nature Reviews Genetics. 2023
LncRNA-encoded peptides in cancer
Yaguang Zhang Journal of Hematology & Oncology. 2024
Comprehensive discovery and functional characterization of the noncanonical proteome
Chengyu Shi, Fangzhou Liu, Xinwan Su, Zuozhen Yang, Ying Wang, Shanshan Xie, Shaofang Xie, Qiang Sun, Yu Chen, Lingjie Sang, Manman Tan, Linyu Zhu, Kai Lei, Junhong Li, Jiecheng Yang, Zerui Gao, Meng Yu, Xinyi Wang, Junfeng Wang, Jing Chen, Wei Zhuo, Zhaoyuan Fang, Jian Liu, Qingfeng Yan, Dante Neculai, Qiming Sun, Jianzhong Shao, Weiqiang Lin, Wei Liu, Jian Chen, Liangjing Wang, Yang Liu, Xu Li, Tianhua Zhou, Aifu Lin Cell Research. 2025
CodLncScape Provides a Self‐Enriching Framework for the Systematic Collection and Exploration of Coding LncRNAs
Tianyuan Liu, Huiyuan Qiao, Zixu Wang, Xinyan Yang, Xianrun Pan, Yu Yang, Xiucai Ye, Tetsuya Sakurai, Hao Lin, Yang Zhang Advanced Science. 2024
Short open reading frame genes in innate immunity: from discovery to characterization
Eric Malekos, Susan Carpenter Trends in Immunology. 2022
Documentation
As an increasing number of non-coding RNAs (ncRNAs) are proved to encode short bioactive
peptides in cancers, exploration of ncRNA-encoded small peptides (ncPEPs) is emerging as a
fascinating field in cancer study. To assist in understanding the modulation mechanism of ncPEPs,
we describe here a database called SPENCER (http://spencer.renlab.org). Currently, SPENCER has
collected a total of 2,806 mass spectrum (MS) data from 55 studies, covering 1,007 tumor samples
and 719 normal samples. Using a MS-based proteomics analysis pipeline, SPENCER has identified
29,526 ncPEPs across 15 different cancer types. Specifically, 22,060 of them were experimentally
validated in other studies. By comparing between tumor and paired normal samples, the identified
ncPEPs are divided into four expression groups, including tumor-specific, up-regulated in tumors,
down-regulated in tumors, and others. Additionally, since ncPEPs can serve as potential targets for
neoantigen-based cancer immunotherapy, SPENCER also predicted the immunogenicity of all the
identified ncPEPs by assessing their MHC-I binding affinity, stability, and TCR recognition probability.
Resultantly, 4,497 ncPEPs are predicted to be immunogenic and curated in SPENCER. Overall,
SPENCER would serve as a useful resource for investigating cancer-associated ncPEPs and may
boost further research in cancer.
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