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S M Hess

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Archives of Biochemistry and Biophysics|January 1, 1973
Adenylate cyclase from guinea pig lung: further characterization and inhibitory effects of substrate analogs and cyclic nucleotidesI Weinryb, I M Michel, S M Hess
Biochemical Pharmacology|July 1, 1971
Mechanism of inhibition of histidine decarboxylase by rhodaninesC A Free, E Majchrowicz, S M Hess
Analytical Biochemistry|February 1, 1972
Radioimmunoassay of cyclic AMP without precipitating antibodyI Weinryb, I M Michel, S M Hess
Nucleic Acids Research|April 11, 1994
SRD1, a S. cerevisiae gene affecting pre-rRNA processing contains a C2/C2 zinc finger motifS M Hess, D R Stanford, A K Hopper
Genetics|March 1, 1990
srd1, a Saccharomyces cerevisiae suppressor of the temperature-sensitive pre-rRNA processing defect of rrp1-1G R Fabian, S M Hess, A K Hopper
Journal of Neurochemistry|December 1, 1973
Characteristics of the catecholamine and histamine receptor sites mediating accumulation of cyclic adenosine 3',5'-monophosphate in guinea pig brainM Chasin, F Mamrak, G Samaniego, et al.
Psychopharmacology Bulletin|October 1, 1975
Modulators of cyclic AMP systemsS M Hess, M Chasin, C A Free, et al.
Biochemistry|September 28, 1971
Steroidogenic and lipolytic activities of 8-substituted derivatives of cyclic 3',5'-adenosine monophosphateC A Free, M Chasin, V S Paik, et al.
Archives of Biochemistry and Biophysics|October 1, 1971
Effects of barbiturate derivatives, sulfhydryl reagents, and oxidizing agents on the activity of adenylate cyclase from guinea pig heart and lungI Weinryb, I M Michel, J F Alicino, et al.
Biochemical Pharmacology|September 15, 1972
1-Ethyl-4-(isopropylidenehydrazino)-1H-pyrazolo-(3,4-b)-pyridine-5-carboxylic acid, ethyl ester, hydrochloride (SQ 20009)--a potent new inhibitor of cyclic 3',5'-nucleotide phosphodiesterasesM Chasin, D N Harris, M B Phillips, et al.
Pageof 2

Showing results (1-10 of 19) with videos related to

Sort By:
Pageof 2
Archives of Biochemistry and Biophysics|January 1, 1973
Adenylate cyclase from guinea pig lung: further characterization and inhibitory effects of substrate analogs and cyclic nucleotidesI Weinryb, I M Michel, S M Hess
Biochemical Pharmacology|July 1, 1971
Mechanism of inhibition of histidine decarboxylase by rhodaninesC A Free, E Majchrowicz, S M Hess
Analytical Biochemistry|February 1, 1972
Radioimmunoassay of cyclic AMP without precipitating antibodyI Weinryb, I M Michel, S M Hess
Nucleic Acids Research|April 11, 1994
SRD1, a S. cerevisiae gene affecting pre-rRNA processing contains a C2/C2 zinc finger motifS M Hess, D R Stanford, A K Hopper
Genetics|March 1, 1990
srd1, a Saccharomyces cerevisiae suppressor of the temperature-sensitive pre-rRNA processing defect of rrp1-1G R Fabian, S M Hess, A K Hopper
Journal of Neurochemistry|December 1, 1973
Characteristics of the catecholamine and histamine receptor sites mediating accumulation of cyclic adenosine 3',5'-monophosphate in guinea pig brainM Chasin, F Mamrak, G Samaniego, et al.
Psychopharmacology Bulletin|October 1, 1975
Modulators of cyclic AMP systemsS M Hess, M Chasin, C A Free, et al.
Biochemistry|September 28, 1971
Steroidogenic and lipolytic activities of 8-substituted derivatives of cyclic 3',5'-adenosine monophosphateC A Free, M Chasin, V S Paik, et al.
Archives of Biochemistry and Biophysics|October 1, 1971
Effects of barbiturate derivatives, sulfhydryl reagents, and oxidizing agents on the activity of adenylate cyclase from guinea pig heart and lungI Weinryb, I M Michel, J F Alicino, et al.
Biochemical Pharmacology|September 15, 1972
1-Ethyl-4-(isopropylidenehydrazino)-1H-pyrazolo-(3,4-b)-pyridine-5-carboxylic acid, ethyl ester, hydrochloride (SQ 20009)--a potent new inhibitor of cyclic 3',5'-nucleotide phosphodiesterasesM Chasin, D N Harris, M B Phillips, et al.
Pageof 2