scholarly journals Suppression of CCDC6 sensitizes tumor to oncolytic virus M1

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Vol 23 (1) ◽  
pp. 158-168
Author(s):  
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Ke Li ◽  
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Wen-tao Huang ◽  
...  
Keyword(s):  
2001 ◽  
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James A. Zwiebel
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2008 ◽  
Vol 35 (S 01) ◽  
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H Leske ◽  
A Baiker ◽  
C Schichor ◽  
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R Goldbrunner ◽  
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Philippe Fournier

Biomedicines ◽  
2021 ◽  
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Cancer immunotherapy has recently become the most promising strategy for hard-to-treat, advanced-stage malignancies [...]


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Vol 18 ◽  
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Chih-Kwang Sung ◽  
Bryan Choi ◽  
Georges Wanna ◽  
Eric M. Genden ◽  
Savio L. C. Woo ◽  
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Vol 14 (1) ◽  
Author(s):  
Fan Jia ◽  
Li Li ◽  
Haizhou Liu ◽  
Pei Lv ◽  
Xiangwei Shi ◽  
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AbstractRabies virus (RV) is the most widely used vector for mapping neural circuits. Previous studies have shown that the RV glycoprotein can be a target to improve the retrograde transsynaptic tracing efficiency. However, the current versions still label only a small portion of all presynaptic neurons. Here, we reshuffled the oG sequence, a chimeric glycoprotein, with positive codon pair bias score (CPBS) based on bioinformatic analysis of mouse codon pair bias, generating ooG, a further optimized glycoprotein. Our experimental data reveal that the ooG has a higher expression level than the oG in vivo, which significantly increases the tracing efficiency by up to 12.6 and 62.1-fold compared to oG and B19G, respectively. The new tool can be used for labeling neural circuits Therefore, the approach reported here provides a convenient, efficient and universal strategy to improve protein expression for various application scenarios such as trans-synaptic tracing efficiency, cell engineering, and vaccine and oncolytic virus designs.


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