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Prion
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October 3, 2017
Spatial sequestration and oligomer remodeling during de novo [PSI<sup>+</sup>] formation
Douglas R Lyke, Anita L Manogaran
Bio-Protocol
|
October 4, 2021
Cytoduction and Plasmiduction in Yeast
Jane E Dorweiler, Anita L Manogaran
Yeast (Chichester, England)
|
April 10, 2019
The three faces of Sup35
Douglas R Lyke, Jane E Dorweiler, Anita L Manogaran
Yeast (Chichester, England)
|
February 24, 2006
An engineered nonsense URA3 allele provides a versatile system to detect the presence, absence and appearance of the [PSI+] prion in Saccharomyces cerevisiae
Anita L Manogaran, Kathryn T Kirkland, Susan W Liebman
CBE Life Sciences Education
|
June 19, 2015
Writing Assignments with a Metacognitive Component Enhance Learning in a Large Introductory Biology Course
Michelle Mynlieff, Anita L Manogaran, Martin St Maurice, et al.
Plos Genetics
|
June 1, 2011
Prion formation and polyglutamine aggregation are controlled by two classes of genes
Anita L Manogaran, Joo Y Hong, Joan Hufana, et al.
Yeast (Chichester, England)
|
December 17, 2009
Most, but not all, yeast strains in the deletion library contain the [PIN(+)] prion
Anita L Manogaran, Viviana M Fajardo, Robert J D Reid, et al.
Scientific Reports
|
March 3, 2017
De novo [PSI <sup>+</sup>] prion formation involves multiple pathways to form infectious oligomers
Jaya Sharma, Brett T Wisniewski, Emily Paulson, et al.
Current Genetics
|
September 1, 2017
Toxicity and infectivity: insights from de novo prion formation
Brett T Wisniewski, Jaya Sharma, Emily R Legan, et al.
Plos Genetics
|
October 3, 2024
The middle domain of Hsp104 can ensure substrates are functional after processing
Hannah E Buchholz, Jane E Dorweiler, Sam Guereca, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 19) with videos related to
Sort By:
Page
of 2
Prion
|
October 3, 2017
Spatial sequestration and oligomer remodeling during de novo [PSI<sup>+</sup>] formation
Douglas R Lyke, Anita L Manogaran
Bio-Protocol
|
October 4, 2021
Cytoduction and Plasmiduction in Yeast
Jane E Dorweiler, Anita L Manogaran
Yeast (Chichester, England)
|
April 10, 2019
The three faces of Sup35
Douglas R Lyke, Jane E Dorweiler, Anita L Manogaran
Yeast (Chichester, England)
|
February 24, 2006
An engineered nonsense URA3 allele provides a versatile system to detect the presence, absence and appearance of the [PSI+] prion in Saccharomyces cerevisiae
Anita L Manogaran, Kathryn T Kirkland, Susan W Liebman
CBE Life Sciences Education
|
June 19, 2015
Writing Assignments with a Metacognitive Component Enhance Learning in a Large Introductory Biology Course
Michelle Mynlieff, Anita L Manogaran, Martin St Maurice, et al.
Plos Genetics
|
June 1, 2011
Prion formation and polyglutamine aggregation are controlled by two classes of genes
Anita L Manogaran, Joo Y Hong, Joan Hufana, et al.
Yeast (Chichester, England)
|
December 17, 2009
Most, but not all, yeast strains in the deletion library contain the [PIN(+)] prion
Anita L Manogaran, Viviana M Fajardo, Robert J D Reid, et al.
Scientific Reports
|
March 3, 2017
De novo [PSI <sup>+</sup>] prion formation involves multiple pathways to form infectious oligomers
Jaya Sharma, Brett T Wisniewski, Emily Paulson, et al.
Current Genetics
|
September 1, 2017
Toxicity and infectivity: insights from de novo prion formation
Brett T Wisniewski, Jaya Sharma, Emily R Legan, et al.
Plos Genetics
|
October 3, 2024
The middle domain of Hsp104 can ensure substrates are functional after processing
Hannah E Buchholz, Jane E Dorweiler, Sam Guereca, et al.
Page
of 2