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Regulatory sequence analysis of semaphorin 4D 5' non-coding region

Semaphorin 4D (Sema4D) has been proven to be one of the hypoxia effectors regulated by hypoxia inducible factor (HIF-1) in multiple cells, and play a role in angiogenesis like VEGF. However, the regulatory sequence characteristics of the Sema4D are not clarified. The possible hypoxia response elemen...

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Autores principales: Qiu, Lijuan, Jiang, Hongchao, Luo, Jia, Xi, Juemin, Wang, Xiaodan, Pan, Yue, Chen, Junying, Zhao, Yujiao, Sun, Qiangming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6400819/
https://www.ncbi.nlm.nih.gov/pubmed/30854096
http://dx.doi.org/10.7150/jca.28169
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author Qiu, Lijuan
Jiang, Hongchao
Luo, Jia
Xi, Juemin
Wang, Xiaodan
Pan, Yue
Chen, Junying
Zhao, Yujiao
Sun, Qiangming
author_facet Qiu, Lijuan
Jiang, Hongchao
Luo, Jia
Xi, Juemin
Wang, Xiaodan
Pan, Yue
Chen, Junying
Zhao, Yujiao
Sun, Qiangming
author_sort Qiu, Lijuan
collection PubMed
description Semaphorin 4D (Sema4D) has been proven to be one of the hypoxia effectors regulated by hypoxia inducible factor (HIF-1) in multiple cells, and play a role in angiogenesis like VEGF. However, the regulatory sequence characteristics of the Sema4D are not clarified. The possible hypoxia response element (HRE) sequences in 5' non-coding Region before ATG start codon of Sema4D were screened, followed by point mutagenesis and luciferase assay analysis. Sequencing and alignment of this region in 11 cancer cell lines and 4 normal cell lines were also performed, followed by cloning, mutation and luciferase assay analysis. The results showed that there were four possible HREs (HRE1-4) sequences in 1275bp range before ATG start codon. Among HRE1-4, HRE2 and HRE4 were functional HIF-1α binding sites. In addition, these two binding sites play different roles in the regulation of Sema4D expression in HUVEC and Caco-2 cells. There were three nucleotide variants (T471C/A600G/C862T) frequently detected in cancer cell lines. The site variation rates of T471C/A600G/C862T were 72.7%, 18.2%, and 72.7% in cancer cells respectively. Luciferase assays showed that T471C and C862T could significantly increase the expression efficiency of downstream target genes. Furthermore, secondary structure prediction showed that mutations at T471C and C862T apparently lead to change of the gene structure. Our study describes the sequence characteristics of 5' non-coding region of Sema4D, enhances our understanding of the regulatory mechanism of Sema4D and benefits the development of a possible anti-angiogenesis therapeutic strategy for malignancies.
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spelling pubmed-64008192019-03-08 Regulatory sequence analysis of semaphorin 4D 5' non-coding region Qiu, Lijuan Jiang, Hongchao Luo, Jia Xi, Juemin Wang, Xiaodan Pan, Yue Chen, Junying Zhao, Yujiao Sun, Qiangming J Cancer Research Paper Semaphorin 4D (Sema4D) has been proven to be one of the hypoxia effectors regulated by hypoxia inducible factor (HIF-1) in multiple cells, and play a role in angiogenesis like VEGF. However, the regulatory sequence characteristics of the Sema4D are not clarified. The possible hypoxia response element (HRE) sequences in 5' non-coding Region before ATG start codon of Sema4D were screened, followed by point mutagenesis and luciferase assay analysis. Sequencing and alignment of this region in 11 cancer cell lines and 4 normal cell lines were also performed, followed by cloning, mutation and luciferase assay analysis. The results showed that there were four possible HREs (HRE1-4) sequences in 1275bp range before ATG start codon. Among HRE1-4, HRE2 and HRE4 were functional HIF-1α binding sites. In addition, these two binding sites play different roles in the regulation of Sema4D expression in HUVEC and Caco-2 cells. There were three nucleotide variants (T471C/A600G/C862T) frequently detected in cancer cell lines. The site variation rates of T471C/A600G/C862T were 72.7%, 18.2%, and 72.7% in cancer cells respectively. Luciferase assays showed that T471C and C862T could significantly increase the expression efficiency of downstream target genes. Furthermore, secondary structure prediction showed that mutations at T471C and C862T apparently lead to change of the gene structure. Our study describes the sequence characteristics of 5' non-coding region of Sema4D, enhances our understanding of the regulatory mechanism of Sema4D and benefits the development of a possible anti-angiogenesis therapeutic strategy for malignancies. Ivyspring International Publisher 2019-01-29 /pmc/articles/PMC6400819/ /pubmed/30854096 http://dx.doi.org/10.7150/jca.28169 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Qiu, Lijuan
Jiang, Hongchao
Luo, Jia
Xi, Juemin
Wang, Xiaodan
Pan, Yue
Chen, Junying
Zhao, Yujiao
Sun, Qiangming
Regulatory sequence analysis of semaphorin 4D 5' non-coding region
title Regulatory sequence analysis of semaphorin 4D 5' non-coding region
title_full Regulatory sequence analysis of semaphorin 4D 5' non-coding region
title_fullStr Regulatory sequence analysis of semaphorin 4D 5' non-coding region
title_full_unstemmed Regulatory sequence analysis of semaphorin 4D 5' non-coding region
title_short Regulatory sequence analysis of semaphorin 4D 5' non-coding region
title_sort regulatory sequence analysis of semaphorin 4d 5' non-coding region
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6400819/
https://www.ncbi.nlm.nih.gov/pubmed/30854096
http://dx.doi.org/10.7150/jca.28169
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