Emily Weinert

Emily Weinert

Penn State University

H-index: 18

North America-United States

About Emily Weinert

Emily Weinert, With an exceptional h-index of 18 and a recent h-index of 13 (since 2020), a distinguished researcher at Penn State University, specializes in the field of Chemistry, Biochemistry, Heme Proteins, Cyclic Nucleotide Signaling.

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

Abstract 1980 Exploring roles for 2', 3'-cyclic nucleotide monophosphates in bacterial cells

Abstract 1355 Oxygen sensing diguanylate cyclase proteins control metal homeostasis and stress tolerance in the Gram-negative bacteria

Abstract 1410 Investigating Bacterial 2', 3'-Cyclic Nucleotide Monophosphate Signaling

Oxygen-selective regulation of cyclic di-GMP synthesis by a globin coupled sensor with a shortened linking domain modulates Shewanella sp. ANA-3 biofilm

Bile salt hydrolase catalyses formation of amine-conjugated bile acids

Insights into the metabolism, signaling, and physiological effects of 2’, 3’-cyclic nucleotide monophosphates in bacteria

Control of bacterial second messenger signaling and motility by heme-based direct oxygen-sensing proteins

An O2-sensing diguanylate cyclase broadly affects the aerobic transcriptome in the phytopathogen Pectobacterium carotovorum

Emily Weinert Information

University

Position

Associate Professor Department of Biochemistry and Molecular Biology

Citations(all)

1361

Citations(since 2020)

543

Cited By

1018

hIndex(all)

18

hIndex(since 2020)

13

i10Index(all)

25

i10Index(since 2020)

19

Email

University Profile Page

Google Scholar

Emily Weinert Skills & Research Interests

Chemistry

Biochemistry

Heme Proteins

Cyclic Nucleotide Signaling

Top articles of Emily Weinert

Abstract 1980 Exploring roles for 2', 3'-cyclic nucleotide monophosphates in bacterial cells

Journal of Biological Chemistry

2024/3/1

Emily Weinert
Emily Weinert

H-Index: 13

Abstract 1355 Oxygen sensing diguanylate cyclase proteins control metal homeostasis and stress tolerance in the Gram-negative bacteria

Journal of Biological Chemistry

2024/3/1

Emily Weinert
Emily Weinert

H-Index: 13

Abstract 1410 Investigating Bacterial 2', 3'-Cyclic Nucleotide Monophosphate Signaling

Journal of Biological Chemistry

2024/3/1

Emily Weinert
Emily Weinert

H-Index: 13

Oxygen-selective regulation of cyclic di-GMP synthesis by a globin coupled sensor with a shortened linking domain modulates Shewanella sp. ANA-3 biofilm

Journal of Inorganic Biochemistry

2024/3/1

Insights into the metabolism, signaling, and physiological effects of 2’, 3’-cyclic nucleotide monophosphates in bacteria

2023/12/7

Control of bacterial second messenger signaling and motility by heme-based direct oxygen-sensing proteins

2023/12/1

An O2-sensing diguanylate cyclase broadly affects the aerobic transcriptome in the phytopathogen Pectobacterium carotovorum

Frontiers in Microbiology

2023/7/7

Spectrophotometric Method for the Quantification and Kinetic Evaluation of In Vitro c-di-GMP Hydrolysis in the Presence and Absence of Oxygen

2023/4/12

In Vitro Measurement of Gas-Dependent and Redox-Sensitive Diguanylate Cyclase Activity

2023/4/12

Oxygen Sensing: Methods and Protocols

2023/4/11

The extracellular electron transport pathway reduces copper for sensing by the CopRS two-component system under anaerobic conditions in Listeria monocytogenes

Journal of bacteriology

2023/1/26

Emily Weinert
Emily Weinert

H-Index: 13

Strain-Specific Gifsy-1 Prophage Genes Are Determinants for Expression of the RNA Repair Operon during the SOS Response in Salmonella enterica Serovar Typhimurium

Journal of bacteriology

2023/1/26

Generation of nucleotide-linked resins for identification of novel binding proteins

2023/1/1

Bile acids are substrates for amine N-acyl transferase activity by bile salt hydrolase

2022/10/10

Binding of 2′, 3′-cyclic nucleotide monophosphates to bacterial ribosomes inhibits translation

ACS central science

2022/9/21

Cellular effects of 2′, 3′-cyclic nucleotide monophosphates in gram-negative bacteria

Journal of bacteriology

2022/1/18

Rescaling biology: increasing integration across biological scales and subdisciplines to enhance understanding and prediction

Integrative and comparative biology

2021/12

Emily Weinert
Emily Weinert

H-Index: 13

Heme-edge residues modulate signal transduction within a bifunctional homo-dimeric sensor protein

Biochemistry

2021/11/29

Differential ligand-selective control of opposing enzymatic activities within a bifunctional c-di-GMP enzyme

Proceedings of the National Academy of Sciences

2021/9/7

See List of Professors in Emily Weinert University(Penn State University)