CAZypedia needs your help!
We have many unassigned pages in need of Authors and Responsible Curators. See a page that's out-of-date and just needs a touch-up? - You are also welcome to become a CAZypedian. Here's how.
Scientists at all career stages, including students, are welcome to contribute.
Learn more about CAZypedia's misson here and in this article.
Totally new to the CAZy classification? Read this first.

Difference between revisions of "User:Daniel Tehrani"

From CAZypedia
Jump to navigation Jump to search
m
(One intermediate revision by the same user not shown)
Line 8: Line 8:
 
#Gilbert2008 pmid=18430603
 
#Gilbert2008 pmid=18430603
  
<biblio>
 
 
#Venkat2022 pmid=35780833
 
#Venkat2022 pmid=35780833
  
<biblio>
 
 
#Vicente2023 pmid=38066107
 
#Vicente2023 pmid=38066107
  
<biblio>
 
 
#Ustun2023 pmid=37315349
 
#Ustun2023 pmid=37315349
 
+
</biblio>
 
<!-- Do not remove this Category tag -->
 
<!-- Do not remove this Category tag -->
 
[[Category:Contributors|Tehrani,Daniel]]
 
[[Category:Contributors|Tehrani,Daniel]]

Revision as of 05:13, 8 July 2024

Profile Picture

Daniel Tehrani is a PhD Candidate at the University of Georgia (UGA) in the Complex Carbohydrate Research Center (CCRC) in Dr. Kelley Moremen's research laboratory. He conducts research on understanding and altering the sugar specificity of glycosyltransferases (GTs) and elucidating the structure and mechanism of the human enzymes involved in chondroitin sulfate (CS) biosynthesis. His GT research focuses on enzymes in the CAZy families GT7, GT31, and GT47. He completed his Bachelors of Science degree in biology at Georgia State University in 2019.



  1. Gilbert HJ, Stålbrand H, and Brumer H. (2008). How the walls come crumbling down: recent structural biochemistry of plant polysaccharide degradation. Curr Opin Plant Biol. 2008;11(3):338-48. DOI:10.1016/j.pbi.2008.03.004 | PubMed ID:18430603 [Gilbert2008]
  2. Venkat A, Tehrani D, Taujale R, Yeung W, Gravel N, Moremen KW, and Kannan N. (2022). Modularity of the hydrophobic core and evolution of functional diversity in fold A glycosyltransferases. J Biol Chem. 2022;298(8):102212. DOI:10.1016/j.jbc.2022.102212 | PubMed ID:35780833 [Venkat2022]
  3. Vicente JB, Guerreiro ACL, Felgueiras B, Chapla D, Tehrani D, Moremen KW, and Costa J. (2023). Glycosyltransferase 8 domain-containing protein 1 (GLT8D1) is a UDP-dependent galactosyltransferase. Sci Rep. 2023;13(1):21684. DOI:10.1038/s41598-023-48605-4 | PubMed ID:38066107 [Vicente2023]
  4. Ustun R, Chalmers G, Tehrani D, and Uzun B. (2023). Computational molecular explanation of Soybean AHAS resistance from P197S mutation. Plant Physiol Biochem. 2023;201:107782. DOI:10.1016/j.plaphy.2023.107782 | PubMed ID:37315349 [Ustun2023]

All Medline abstracts: PubMed