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The first Conus genome assembly reveals a primary genetic central dogma of conopeptides in C. betulinus

Although there are various Conus species with publicly available transcriptome and proteome data, no genome assembly has been reported yet. Here, using Chinese tubular cone snail (C. betulinus) as a representative, we sequenced and assembled the first Conus genome with original identification of 133...

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Autores principales: Peng, Chao, Huang, Yu, Bian, Chao, Li, Jia, Liu, Jie, Zhang, Kai, You, Xinxin, Lin, Zhilong, He, Yanbin, Chen, Jieming, Lv, Yunyun, Ruan, Zhiqiang, Zhang, Xinhui, Yi, Yunhai, Li, Yanping, Lin, Xueqiang, Gu, Ruobo, Xu, Junmin, Yang, Jia’an, Fan, Chongxu, Yao, Ge, Chen, Ji-Sheng, Jiang, Hui, Gao, Bingmiao, Shi, Qiong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Singapore 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7900195/
https://www.ncbi.nlm.nih.gov/pubmed/33619264
http://dx.doi.org/10.1038/s41421-021-00244-7
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author Peng, Chao
Huang, Yu
Bian, Chao
Li, Jia
Liu, Jie
Zhang, Kai
You, Xinxin
Lin, Zhilong
He, Yanbin
Chen, Jieming
Lv, Yunyun
Ruan, Zhiqiang
Zhang, Xinhui
Yi, Yunhai
Li, Yanping
Lin, Xueqiang
Gu, Ruobo
Xu, Junmin
Yang, Jia’an
Fan, Chongxu
Yao, Ge
Chen, Ji-Sheng
Jiang, Hui
Gao, Bingmiao
Shi, Qiong
author_facet Peng, Chao
Huang, Yu
Bian, Chao
Li, Jia
Liu, Jie
Zhang, Kai
You, Xinxin
Lin, Zhilong
He, Yanbin
Chen, Jieming
Lv, Yunyun
Ruan, Zhiqiang
Zhang, Xinhui
Yi, Yunhai
Li, Yanping
Lin, Xueqiang
Gu, Ruobo
Xu, Junmin
Yang, Jia’an
Fan, Chongxu
Yao, Ge
Chen, Ji-Sheng
Jiang, Hui
Gao, Bingmiao
Shi, Qiong
author_sort Peng, Chao
collection PubMed
description Although there are various Conus species with publicly available transcriptome and proteome data, no genome assembly has been reported yet. Here, using Chinese tubular cone snail (C. betulinus) as a representative, we sequenced and assembled the first Conus genome with original identification of 133 genome-widely distributed conopeptide genes. After integration of our genomics, transcriptomics, and peptidomics data in the same species, we established a primary genetic central dogma of diverse conopeptides, assuming a rough number ratio of ~1:1:1:10s for the total genes: transcripts: proteins: post-translationally modified peptides. This ratio may be special for this worm-hunting Conus species, due to the high diversity of various Conus genomes and the big number ranges of conopeptide genes, transcripts, and peptides in previous reports of diverse Conus species. Only a fraction (45.9%) of the identified conotopeptide genes from our achieved genome assembly are transcribed with transcriptomic evidence, and few genes individually correspond to multiple transcripts possibly due to intraspecies or mutation-based variances. Variable peptide processing at the proteomic level, generating a big diversity of venom conopeptides with alternative cleavage sites, post-translational modifications, and N-/C-terminal truncations, may explain how the 133 genes and ~123 transcripts can generate thousands of conopeptides in the venom of individual C. betulinus. We also predicted many conopeptides with high stereostructural similarities to the putative analgesic ω-MVIIA, addiction therapy AuIB and insecticide ImI, suggesting that our current genome assembly for C. betulinus is a valuable genetic resource for high-throughput prediction and development of potential pharmaceuticals.
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spelling pubmed-79001952021-03-05 The first Conus genome assembly reveals a primary genetic central dogma of conopeptides in C. betulinus Peng, Chao Huang, Yu Bian, Chao Li, Jia Liu, Jie Zhang, Kai You, Xinxin Lin, Zhilong He, Yanbin Chen, Jieming Lv, Yunyun Ruan, Zhiqiang Zhang, Xinhui Yi, Yunhai Li, Yanping Lin, Xueqiang Gu, Ruobo Xu, Junmin Yang, Jia’an Fan, Chongxu Yao, Ge Chen, Ji-Sheng Jiang, Hui Gao, Bingmiao Shi, Qiong Cell Discov Article Although there are various Conus species with publicly available transcriptome and proteome data, no genome assembly has been reported yet. Here, using Chinese tubular cone snail (C. betulinus) as a representative, we sequenced and assembled the first Conus genome with original identification of 133 genome-widely distributed conopeptide genes. After integration of our genomics, transcriptomics, and peptidomics data in the same species, we established a primary genetic central dogma of diverse conopeptides, assuming a rough number ratio of ~1:1:1:10s for the total genes: transcripts: proteins: post-translationally modified peptides. This ratio may be special for this worm-hunting Conus species, due to the high diversity of various Conus genomes and the big number ranges of conopeptide genes, transcripts, and peptides in previous reports of diverse Conus species. Only a fraction (45.9%) of the identified conotopeptide genes from our achieved genome assembly are transcribed with transcriptomic evidence, and few genes individually correspond to multiple transcripts possibly due to intraspecies or mutation-based variances. Variable peptide processing at the proteomic level, generating a big diversity of venom conopeptides with alternative cleavage sites, post-translational modifications, and N-/C-terminal truncations, may explain how the 133 genes and ~123 transcripts can generate thousands of conopeptides in the venom of individual C. betulinus. We also predicted many conopeptides with high stereostructural similarities to the putative analgesic ω-MVIIA, addiction therapy AuIB and insecticide ImI, suggesting that our current genome assembly for C. betulinus is a valuable genetic resource for high-throughput prediction and development of potential pharmaceuticals. Springer Singapore 2021-02-23 /pmc/articles/PMC7900195/ /pubmed/33619264 http://dx.doi.org/10.1038/s41421-021-00244-7 Text en © The Author(s) 2021 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Peng, Chao
Huang, Yu
Bian, Chao
Li, Jia
Liu, Jie
Zhang, Kai
You, Xinxin
Lin, Zhilong
He, Yanbin
Chen, Jieming
Lv, Yunyun
Ruan, Zhiqiang
Zhang, Xinhui
Yi, Yunhai
Li, Yanping
Lin, Xueqiang
Gu, Ruobo
Xu, Junmin
Yang, Jia’an
Fan, Chongxu
Yao, Ge
Chen, Ji-Sheng
Jiang, Hui
Gao, Bingmiao
Shi, Qiong
The first Conus genome assembly reveals a primary genetic central dogma of conopeptides in C. betulinus
title The first Conus genome assembly reveals a primary genetic central dogma of conopeptides in C. betulinus
title_full The first Conus genome assembly reveals a primary genetic central dogma of conopeptides in C. betulinus
title_fullStr The first Conus genome assembly reveals a primary genetic central dogma of conopeptides in C. betulinus
title_full_unstemmed The first Conus genome assembly reveals a primary genetic central dogma of conopeptides in C. betulinus
title_short The first Conus genome assembly reveals a primary genetic central dogma of conopeptides in C. betulinus
title_sort first conus genome assembly reveals a primary genetic central dogma of conopeptides in c. betulinus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7900195/
https://www.ncbi.nlm.nih.gov/pubmed/33619264
http://dx.doi.org/10.1038/s41421-021-00244-7
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