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Our group studies the mechanisms and transcriptome-wide patterns of eukaryotic mRNA translation as one of life’s core processes and its regulation by RNA-binding proteins and non-coding RNA (e.g. microRNAs) as a means of controlling gene activity. Translation takes place on the ribosome, and is aided by numerous accessory factors. Control at this post-transcriptional level makes major contributions to gene regulation and its dysregulation is increasingly recognised as an important factor in human disease. Pathologic mechanisms may perturb the activity of components of the translational machinery with a broad impact on the cellular translation program, leading to, for instance, malignant transformation, inappropriate cell death or cardiac hypertrophy. Failure to properly regulate the translation of specific mRNAs is also linked to a growing spectrum of diseases. We investigate post-transcriptional gene control in mammalian and yeast cell culture models and employ a mix of conventional molecular biology approaches as well as global methods such as next generation sequencing.
Our group studies the mechanisms and transcriptome-wide patterns of eukaryotic mRNA translation as one of life’s core processes and its regulation by RNA-binding proteins and non-coding RNA (e.g. microRNAs) as a means of controlling gene activity. Translation takes place on the ribosome, and is aided by numerous accessory factors. Control at this post-transcriptional level makes major contributions to gene regulation and its dysregulation is increasingly recognised as an important factor in human disease. Pathologic mechanisms may perturb the activity of components of the translational machinery with a broad impact on the cellular translation program, leading to, for instance, malignant transformation, inappropriate cell death or cardiac hypertrophy. Failure to properly regulate the translation of specific mRNAs is also linked to a growing spectrum of diseases. We investigate post-transcriptional gene control in mammalian and yeast cell culture models and employ a mix of conventional molecular biology approaches as well as global methods such as next generation sequencing.
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论文共 154 篇作者统计合作学者相似作者
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Yuchen Feng, Simin Zheng, Xiaohong Zhao, Yuanyuan Zhang,Ran Xu, Liang Xu,Thomas Preiss,Lei Jin,Jinnan Gao,Xu Dong Zhang
Cancer Researchno. 6_Supplement (2024): 5697-5697
P. Acera Mateos,A.J. Sethi,A. Ravindran,A. Srivastava, M. Kanchi, S. Mahmud,M. Guarnacci,K. Woodward,J. Xu,Z.W.S. Yuen,Y. Zhou,A. Sneddon,W. Hamilton,J. Gao,L.M. Starrs, R. Hayashi,V. Wickramasinghe,K. Zarnack,T. Preiss,G. Burgio,N. Dehorter,N. Shirokikh,E. Eyras
bioRxiv (Cold Spring Harbor Laboratory) (2024)
crossref(2024)
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crossref(2024)
Marco Guarnacci,Pei-Hong Zhang, Madhu Kanchi, Yu-Ting Hung, Hanrong Lin,Nikolay E Shirokikh,Li Yang,Thomas Preiss
Life science allianceno. 9 (2024)
crossref(2024)
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作者统计
#Papers: 154
#Citation: 11940
H-Index: 57
G-Index: 109
Sociability: 6
Diversity: 0
Activity: 1
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