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Randy M Whittal

Showing results (21-30 of 47) with videos related to

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ACS Chemical Biology|March 15, 2013
Chaperones rejuvenate folding and activity of 3-β hydroxysteroid dehydrogenase 2Maheshinie Rajapaksha, Manoj Prasad, James L Thomas, et al.
The Journal of Biological Chemistry|September 21, 2011
Inner mitochondrial translocase Tim50 interacts with 3β-hydroxysteroid dehydrogenase type 2 to regulate adrenal and gonadal steroidogenesisKevin J Pawlak, Manoj Prasad, James L Thomas, et al.
Iscience|July 6, 2020
Electron Transport Chain Complex II Regulates Steroid MetabolismHimangshu S Bose, Brendan Marshall, Dilip K Debnath, et al.
Plos One|April 6, 2022
Purification and characterization of antifungal lipopeptide produced by Bacillus velezensis isolated from raw honeyZirui Ray Xiong, Mario Cobo, Randy M Whittal, et al.
Journal of the American Society for Mass Spectrometry|May 23, 2006
Electrospray mass spectrometry of NeuAc oligomers associated with the C fragment of the tetanus toxinMaria C Prieto Conway, Randy M Whittal, Michael A Baldwin, et al.
The Journal of Biological Chemistry|December 16, 2014
Mitochondria-associated endoplasmic reticulum membrane (MAM) regulates steroidogenic activity via steroidogenic acute regulatory protein (StAR)-voltage-dependent anion channel 2 (VDAC2) interactionManoj Prasad, Jasmeet Kaur, Kevin J Pawlak, et al.
Biochemistry|January 24, 2008
StAR-like activity and molten globule behavior of StARD6, a male germ-line proteinHimangshu S Bose, Randy M Whittal, Yong Ran, et al.
Chemico-Biological Interactions|March 30, 2019
Eosinophil peroxidase oxidizes isoniazid to form the active metabolite against M. tuberculosis, isoniazid-NAD<sup></sup>Dinesh Babu, Andrew G Morgan, Béla Reiz, et al.
Biological Procedures Online|May 8, 2003
Methods for Analysis of Matrix Metalloproteinase Regulation of Neutrophil-Endothelial Cell AdhesionCarlos Fernandez-Patron, Christine Zouki, Randy M. Whittal, et al.
The Journal of Biological Chemistry|September 1, 2011
Exploiting bacterial glycosylation machineries for the synthesis of a Lewis antigen-containing glycoproteinIsabelle Hug, Blake Zheng, Bela Reiz, et al.
Pageof 5

Showing results (21-30 of 47) with videos related to

Sort By:
Pageof 5
ACS Chemical Biology|March 15, 2013
Chaperones rejuvenate folding and activity of 3-β hydroxysteroid dehydrogenase 2Maheshinie Rajapaksha, Manoj Prasad, James L Thomas, et al.
The Journal of Biological Chemistry|September 21, 2011
Inner mitochondrial translocase Tim50 interacts with 3β-hydroxysteroid dehydrogenase type 2 to regulate adrenal and gonadal steroidogenesisKevin J Pawlak, Manoj Prasad, James L Thomas, et al.
Iscience|July 6, 2020
Electron Transport Chain Complex II Regulates Steroid MetabolismHimangshu S Bose, Brendan Marshall, Dilip K Debnath, et al.
Plos One|April 6, 2022
Purification and characterization of antifungal lipopeptide produced by Bacillus velezensis isolated from raw honeyZirui Ray Xiong, Mario Cobo, Randy M Whittal, et al.
Journal of the American Society for Mass Spectrometry|May 23, 2006
Electrospray mass spectrometry of NeuAc oligomers associated with the C fragment of the tetanus toxinMaria C Prieto Conway, Randy M Whittal, Michael A Baldwin, et al.
The Journal of Biological Chemistry|December 16, 2014
Mitochondria-associated endoplasmic reticulum membrane (MAM) regulates steroidogenic activity via steroidogenic acute regulatory protein (StAR)-voltage-dependent anion channel 2 (VDAC2) interactionManoj Prasad, Jasmeet Kaur, Kevin J Pawlak, et al.
Biochemistry|January 24, 2008
StAR-like activity and molten globule behavior of StARD6, a male germ-line proteinHimangshu S Bose, Randy M Whittal, Yong Ran, et al.
Chemico-Biological Interactions|March 30, 2019
Eosinophil peroxidase oxidizes isoniazid to form the active metabolite against M. tuberculosis, isoniazid-NAD<sup></sup>Dinesh Babu, Andrew G Morgan, Béla Reiz, et al.
Biological Procedures Online|May 8, 2003
Methods for Analysis of Matrix Metalloproteinase Regulation of Neutrophil-Endothelial Cell AdhesionCarlos Fernandez-Patron, Christine Zouki, Randy M. Whittal, et al.
The Journal of Biological Chemistry|September 1, 2011
Exploiting bacterial glycosylation machineries for the synthesis of a Lewis antigen-containing glycoproteinIsabelle Hug, Blake Zheng, Bela Reiz, et al.
Pageof 5