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David B Sacks

Showing results (101-110 of 212) with videos related to

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Biochemical and Biophysical Research Communications|May 15, 2003
Identification and characterization of the Cdc42-binding site of IQGAP1Jennifer M Mataraza, Michael W Briggs, Zhigang Li, et al.
Clinical Chemistry|November 2, 2019
Inadequate Reporting of Analytical Characteristics of Biomarkers Used in Clinical Research: A Threat to Interpretation and Replication of Study FindingsQian Sun, Kerry J Welsh, David E Bruns, et al.
The Journal of Biological Chemistry|February 9, 2017
Calmodulin Lobes Facilitate Dimerization and Activation of Estrogen Receptor-αZhigang Li, Yonghong Zhang, Andrew C Hedman, et al.
The Journal of Biological Chemistry|November 6, 2007
IQGAP1 stimulates proliferation and enhances tumorigenesis of human breast epithelial cellsLorraine Jadeski, Jennifer M Mataraza, Ha-Won Jeong, et al.
Diabetes Research and Clinical Practice|July 31, 2025
Continuous glucose monitoring in gestational diabetes mellitus: hope or hype?Thora Y Chai, Samuel Leathwick, Mukesh M Agarwal, et al.
The Journal of Biological Chemistry|February 26, 2011
MAPK scaffold IQGAP1 binds the EGF receptor and modulates its activationDean E McNulty, Zhigang Li, Colin D White, et al.
Diabetes Care|March 3, 2022
Erratum. Controversies Around the Measurement of Blood Ketones to Diagnose and Manage Diabetic Ketoacidosis. Diabetes Care 2022;45:267-272Eric S Kilpatrick, Alexandra E Butler, Linda Ostlundh, et al.
Biochemistry|November 15, 2019
Ca<sup>2+</sup>-Dependent Switch of Calmodulin Interaction Mode with Tandem IQ Motifs in the Scaffolding Protein IQGAP1Mingzhen Zhang, Zhigang Li, Hyunbum Jang, et al.
Diabetes Care|January 20, 2022
Controversies Around the Measurement of Blood Ketones to Diagnose and Manage Diabetic KetoacidosisEric S Kilpatrick, Alexandra E Butler, Linda Ostlundh, et al.
Cellular Signalling|June 5, 2007
Multiple proteins mediate IQGAP1-stimulated cell migrationJennifer M Mataraza, Zhigang Li, Ha-Won Jeong, et al.
Pageof 22

Showing results (101-110 of 212) with videos related to

Sort By:
Pageof 22
Biochemical and Biophysical Research Communications|May 15, 2003
Identification and characterization of the Cdc42-binding site of IQGAP1Jennifer M Mataraza, Michael W Briggs, Zhigang Li, et al.
Clinical Chemistry|November 2, 2019
Inadequate Reporting of Analytical Characteristics of Biomarkers Used in Clinical Research: A Threat to Interpretation and Replication of Study FindingsQian Sun, Kerry J Welsh, David E Bruns, et al.
The Journal of Biological Chemistry|February 9, 2017
Calmodulin Lobes Facilitate Dimerization and Activation of Estrogen Receptor-αZhigang Li, Yonghong Zhang, Andrew C Hedman, et al.
The Journal of Biological Chemistry|November 6, 2007
IQGAP1 stimulates proliferation and enhances tumorigenesis of human breast epithelial cellsLorraine Jadeski, Jennifer M Mataraza, Ha-Won Jeong, et al.
Diabetes Research and Clinical Practice|July 31, 2025
Continuous glucose monitoring in gestational diabetes mellitus: hope or hype?Thora Y Chai, Samuel Leathwick, Mukesh M Agarwal, et al.
The Journal of Biological Chemistry|February 26, 2011
MAPK scaffold IQGAP1 binds the EGF receptor and modulates its activationDean E McNulty, Zhigang Li, Colin D White, et al.
Diabetes Care|March 3, 2022
Erratum. Controversies Around the Measurement of Blood Ketones to Diagnose and Manage Diabetic Ketoacidosis. Diabetes Care 2022;45:267-272Eric S Kilpatrick, Alexandra E Butler, Linda Ostlundh, et al.
Biochemistry|November 15, 2019
Ca<sup>2+</sup>-Dependent Switch of Calmodulin Interaction Mode with Tandem IQ Motifs in the Scaffolding Protein IQGAP1Mingzhen Zhang, Zhigang Li, Hyunbum Jang, et al.
Diabetes Care|January 20, 2022
Controversies Around the Measurement of Blood Ketones to Diagnose and Manage Diabetic KetoacidosisEric S Kilpatrick, Alexandra E Butler, Linda Ostlundh, et al.
Cellular Signalling|June 5, 2007
Multiple proteins mediate IQGAP1-stimulated cell migrationJennifer M Mataraza, Zhigang Li, Ha-Won Jeong, et al.
Pageof 22