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A Wesley

Showing results (101-110 of 354) with videos related to

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Metabolism: Clinical and Experimental|May 1, 1984
The metabolic response and problems with nutritional support in acute tetanusS J O'Keefe, A Wesley, I Jialal, et al.
The Journal of Biological Chemistry|May 22, 2003
Adjacent sequence controls the response polarity of nitric oxide-sensitive Sp factor binding sitesJianhua Zhang, Shuibang Wang, Robert A Wesley, et al.
Cancer|February 1, 1984
The grading of soft tissue sarcomas. Results of a clinicohistopathologic correlation in a series of 163 casesJ Costa, R A Wesley, E Glatstein, et al.
Pediatric Research|January 1, 1983
Human intestinal mucin in cystic fibrosisA Wesley, J Forstner, R Qureshi, et al.
The Journal of Biological Chemistry|February 28, 1997
Nitric oxide increases tumor necrosis factor production in differentiated U937 cells by decreasing cyclic AMPS Wang, L Yan, R A Wesley, et al.
Molecular Nutrition & Food Research|February 7, 2013
Type B CpG oligodeoxynucleotides induce Th1 responses to peanut antigens: modulation of sensitization and utility in a truncated immunotherapy regimen in miceMike Kulis, Balachandra Gorentla, A Wesley Burks, et al.
The FEBS Journal|September 15, 2017
Analysis of NFU-1 metallocofactor binding-site substitutions-impacts on iron-sulfur cluster coordination and protein structure and functionNathaniel A Wesley, Christine Wachnowsky, Insiya Fidai, et al.
The FEBS Journal|September 15, 2017
Understanding the molecular basis for multiple mitochondrial dysfunctions syndrome 1 (MMDS1): impact of a disease-causing Gly189Arg substitution on NFU1Nathaniel A Wesley, Christine Wachnowsky, Insiya Fidai, et al.
The Journal of Biological Chemistry|November 24, 1999
A Sp1 binding site of the tumor necrosis factor alpha promoter functions as a nitric oxide response elementS Wang, W Wang, R A Wesley, et al.
Journal of Molecular Biology|February 6, 2017
Understanding the Molecular Basis of Multiple Mitochondrial Dysfunctions Syndrome 1 (MMDS1)-Impact of a Disease-Causing Gly208Cys Substitution on Structure and Activity of NFU1 in the Fe/S Cluster Biosynthetic PathwayChristine Wachnowsky, Nathaniel A Wesley, Insiya Fidai, et al.
Pageof 36

Showing results (101-110 of 354) with videos related to

Sort By:
Pageof 36
Metabolism: Clinical and Experimental|May 1, 1984
The metabolic response and problems with nutritional support in acute tetanusS J O'Keefe, A Wesley, I Jialal, et al.
The Journal of Biological Chemistry|May 22, 2003
Adjacent sequence controls the response polarity of nitric oxide-sensitive Sp factor binding sitesJianhua Zhang, Shuibang Wang, Robert A Wesley, et al.
Cancer|February 1, 1984
The grading of soft tissue sarcomas. Results of a clinicohistopathologic correlation in a series of 163 casesJ Costa, R A Wesley, E Glatstein, et al.
Pediatric Research|January 1, 1983
Human intestinal mucin in cystic fibrosisA Wesley, J Forstner, R Qureshi, et al.
The Journal of Biological Chemistry|February 28, 1997
Nitric oxide increases tumor necrosis factor production in differentiated U937 cells by decreasing cyclic AMPS Wang, L Yan, R A Wesley, et al.
Molecular Nutrition & Food Research|February 7, 2013
Type B CpG oligodeoxynucleotides induce Th1 responses to peanut antigens: modulation of sensitization and utility in a truncated immunotherapy regimen in miceMike Kulis, Balachandra Gorentla, A Wesley Burks, et al.
The FEBS Journal|September 15, 2017
Analysis of NFU-1 metallocofactor binding-site substitutions-impacts on iron-sulfur cluster coordination and protein structure and functionNathaniel A Wesley, Christine Wachnowsky, Insiya Fidai, et al.
The FEBS Journal|September 15, 2017
Understanding the molecular basis for multiple mitochondrial dysfunctions syndrome 1 (MMDS1): impact of a disease-causing Gly189Arg substitution on NFU1Nathaniel A Wesley, Christine Wachnowsky, Insiya Fidai, et al.
The Journal of Biological Chemistry|November 24, 1999
A Sp1 binding site of the tumor necrosis factor alpha promoter functions as a nitric oxide response elementS Wang, W Wang, R A Wesley, et al.
Journal of Molecular Biology|February 6, 2017
Understanding the Molecular Basis of Multiple Mitochondrial Dysfunctions Syndrome 1 (MMDS1)-Impact of a Disease-Causing Gly208Cys Substitution on Structure and Activity of NFU1 in the Fe/S Cluster Biosynthetic PathwayChristine Wachnowsky, Nathaniel A Wesley, Insiya Fidai, et al.
Pageof 36