Jason N. Kuehner

Jason N. Kuehner

Emmanuel College

H-index: 8

North America-United States

About Jason N. Kuehner

Jason N. Kuehner, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Emmanuel College, specializes in the field of Coordination of mRNA 3'-end processing with cell stress responses.

His recent articles reflect a diverse array of research interests and contributions to the field:

Mutations in yeast Pcf11, a conserved protein essential for mRNA 3′ end processing and transcription termination, elicit the Environmental Stress Response

A simple, robust, broadly applicable insertion mutagenesis method to create random fluorescent protein–target protein fusions.

RNA polymerase II transcription attenuation at the yeast DNA repair gene DEF1 is biologically significant and dependent on the Hrp1 RNA-recognition motif

RNA Polymerase II transcription attenuation at multiple genes in yeast depends on the mRNA 3ʹ-end processing factor Hrp1 and its RNA recognition motif

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Jason N. Kuehner Information

University

Position

Associate Professor of Biology Boston MA

Citations(all)

1210

Citations(since 2020)

337

Cited By

1017

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

8

i10Index(since 2020)

8

Email

University Profile Page

Emmanuel College

Google Scholar

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Jason N. Kuehner Skills & Research Interests

Coordination of mRNA 3'-end processing with cell stress responses

Top articles of Jason N. Kuehner

Title

Journal

Author(s)

Publication Date

Mutations in yeast Pcf11, a conserved protein essential for mRNA 3′ end processing and transcription termination, elicit the Environmental Stress Response

Genetics

Joel H Graber

Derick Hoskinson

Huiyun Liu

Katarzyna Kaczmarek Michaels

Peter S Benson

...

2024/2

A simple, robust, broadly applicable insertion mutagenesis method to create random fluorescent protein–target protein fusions.

bioRxiv

Andrew Pike

Cassandra Pietryski

Padraig Deighan

Jason N Kuehner

Derek Lau

...

2024

RNA polymerase II transcription attenuation at the yeast DNA repair gene DEF1 is biologically significant and dependent on the Hrp1 RNA-recognition motif

G3

Maria E Amodeo

Shane PC Mitchell

Vincent Pavan

Jason N Kuehner

2023/1/5

RNA Polymerase II transcription attenuation at multiple genes in yeast depends on the mRNA 3ʹ-end processing factor Hrp1 and its RNA recognition motif

Journal of Biological Chemistry

Mackenzie Roche

Sidney Edouard

Justin Talluto

Vincent Pavan

Jason Kuehner

2023/1/1

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J. Chem. Theory Comput

JL Paulsen

F Leidner

DA Ragland

NK Yilmaz

CA Schiffer

2017

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