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Nature
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June 26, 2020
Reversing a model of Parkinson's disease with in situ converted nigral neurons
Hao Qian, Xinjiang Kang, Jing Hu, et al.
Nature
|
July 30, 2020
Author Correction: Reversing a model of Parkinson's disease with in situ converted nigral neurons
Hao Qian, Xinjiang Kang, Jing Hu, et al.
EMBO Reports
|
January 11, 2020
CRMP2 mediates Sema3F-dependent axon pruning and dendritic spine remodeling
Jakub Ziak, Romana Weissova, Kateřina Jeřábková, et al.
Science (New York, N.Y.)
|
March 17, 2023
Mechanism of <i>STMN2</i> cryptic splice-polyadenylation and its correction for TDP-43 proteinopathies
Michael W Baughn, Ze'ev Melamed, Jone López-Erauskin, et al.
Biorxiv : the Preprint Server for Biology
|
November 14, 2023
Aberrant splicing in Huntington's disease via disrupted TDP-43 activity accompanied by altered m6A RNA modification
Thai B Nguyen, Ricardo Miramontes, Carlos Chillon-Marinas, et al.
Nature Neuroscience
|
January 6, 2025
Aberrant splicing in Huntington's disease accompanies disrupted TDP-43 activity and altered m6A RNA modification
Thai B Nguyen, Ricardo Miramontes, Carlos Chillon-Marinas, et al.
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Search research articles
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Showing results (11-20 of 16) with videos related to
Sort By:
Page
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You have reached the last page of results.
This site can display upto 16 results.
Nature
|
June 26, 2020
Reversing a model of Parkinson's disease with in situ converted nigral neurons
Hao Qian, Xinjiang Kang, Jing Hu, et al.
Nature
|
July 30, 2020
Author Correction: Reversing a model of Parkinson's disease with in situ converted nigral neurons
Hao Qian, Xinjiang Kang, Jing Hu, et al.
EMBO Reports
|
January 11, 2020
CRMP2 mediates Sema3F-dependent axon pruning and dendritic spine remodeling
Jakub Ziak, Romana Weissova, Kateřina Jeřábková, et al.
Science (New York, N.Y.)
|
March 17, 2023
Mechanism of <i>STMN2</i> cryptic splice-polyadenylation and its correction for TDP-43 proteinopathies
Michael W Baughn, Ze'ev Melamed, Jone López-Erauskin, et al.
Biorxiv : the Preprint Server for Biology
|
November 14, 2023
Aberrant splicing in Huntington's disease via disrupted TDP-43 activity accompanied by altered m6A RNA modification
Thai B Nguyen, Ricardo Miramontes, Carlos Chillon-Marinas, et al.
Nature Neuroscience
|
January 6, 2025
Aberrant splicing in Huntington's disease accompanies disrupted TDP-43 activity and altered m6A RNA modification
Thai B Nguyen, Ricardo Miramontes, Carlos Chillon-Marinas, et al.
Page
of 2