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转录因子HNF1A、HNF4A和FOXA2调节肝细胞蛋白质N-糖基化
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作者 Vedrana Vicic Bockor Nika Foglar +7 位作者 Goran Josipovic Marija Klasic Ana Vujic Branimir Plavsa Toma Keser Samira Smajlovic Aleksandar Vojta Vlatka Zoldos 《Engineering》 SCIE EI CAS CSCD 2024年第1期57-68,共12页
Hepatocyte nuclear factor 1 alpha(HNF1A),hepatocyte nuclear factor 4 alpha(HNF4A),and forkhead box protein A2(FOXA2)are key transcription factors that regulate a complex gene network in the liver,cre-ating a regulator... Hepatocyte nuclear factor 1 alpha(HNF1A),hepatocyte nuclear factor 4 alpha(HNF4A),and forkhead box protein A2(FOXA2)are key transcription factors that regulate a complex gene network in the liver,cre-ating a regulatory transcriptional loop.The Encode and ChIP-Atlas databases identify the recognition sites of these transcription factors in many glycosyltransferase genes.Our in silico analysis of HNF1A,HNF4A.and FOXA2 binding to the ten candidate glyco-genes studied in this work confirms a significant enrich-ment of these transcription factors specifically in the liver.Our previous studies identified HNF1A as a master regulator of fucosylation,glycan branching,and galactosylation of plasma glycoproteins.Here,we aimed to functionally validate the role of the three transcription factors on downstream glyco-gene transcriptional expression and the possible effect on glycan phenotype.We used the state-of-the-art clus-tered regularly interspaced short palindromic repeats/dead Cas9(CRISPR/dCas9)molecular tool for the downregulation of the HNF1A,HNF4A,and FOXA2 genes in HepG2 cells-a human liver cancer cell line.The results show that the downregulation of all three genes individually and in pairs affects the transcrip-tional activity of many glyco-genes,although downregulation of glyco-genes was not always followed by an unambiguous change in the corresponding glycan structures.The effect is better seen as an overall change in the total HepG2 N-glycome,primarily due to the extension of biantennary glycans.We propose an alternative way to evaluate the N-glycome composition via estimating the overall complexity of the glycome by quantifying the number of monomers in each glycan structure.We also propose a model showing feedback loops with the mutual activation of HNF1A-FOXA2 and HNF4A-FOXA2 affecting glyco-genes and protein glycosylation in HepG2 cells. 展开更多
关键词 Clustered regularly interspaced short palindromic repeats/dead cas9(CRISPR/dcas9) EPIGENETICS Hepatocyte nuclear factor 1 alpha(HNF1A) Hepatocyte nuclear factor 4 alpha(HNF4A) Forkhead box protein A2(FOXA2) N-GLYCOSYLATION HepG2 cells
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CRISPR-dCas9转录调控系统及其在遗传病治疗研究中的应用 被引量:2
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作者 李博文 梁世倩 +1 位作者 白健 秦鸿雁 《生命科学》 CSCD 北大核心 2019年第6期628-636,共9页
CRISPR-Cas9是一种强大的基因组编辑系统,随着研究的深入,科学家建立了调控基因组转录的CRISPR-dCas9系统。该系统的建立基于dCas9的发现,dCas9丧失核酸酶活性,虽不具有DNA切割活性,但仍然具有DNA结合活性,其可在sgRNA的引导下靶向目的... CRISPR-Cas9是一种强大的基因组编辑系统,随着研究的深入,科学家建立了调控基因组转录的CRISPR-dCas9系统。该系统的建立基于dCas9的发现,dCas9丧失核酸酶活性,虽不具有DNA切割活性,但仍然具有DNA结合活性,其可在sgRNA的引导下靶向目的基因,将特定的转录激活因子(或抑制因子)携带至目的基因上游,实现对目的基因的转录激活(CRISPRa)或转录抑制(CRISPRi)。目前该系统已用于遗传病治疗的实验研究,取得了可喜的进展,具有潜在的临床应用价值。该文从CRISPR-dCas9系统建立、发展以及在几种遗传病治疗领域的研究进行了综述。 展开更多
关键词 死亡cas9 CRISPR激活 CRISPR抑制 杜氏肌营养不良 脆性X染色体综合征 色素性视网膜炎
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