Sandbox Reserved 1761: Difference between revisions

From Proteopedia
Jump to navigationJump to search
No edit summary
added secondary features
Line 8: Line 8:
The specific function of Human ornithine aminotransferase (hOAT) is that of an enzyme. It can be found in humans, as well as mice and pigs. It helps transfer L-ornithine’s δ-amino group to α-ketoglutarate (α-KG).  
The specific function of Human ornithine aminotransferase (hOAT) is that of an enzyme. It can be found in humans, as well as mice and pigs. It helps transfer L-ornithine’s δ-amino group to α-ketoglutarate (α-KG).  
<scene name='93/934005/Spin/2'>Rotating cartoon</scene>  
<scene name='93/934005/Spin/2'>Rotating cartoon</scene>  
== Biological relevance and broader implications ==
== Biological relevance and broader implications ==
''h''OAT is important because it is heavily involved in the urea cycle. In mammals, it dictates a large portion of the development of neonates. The research on this protein is relevant to science as a whole because it could directly impact cancer research and lead to the creation of cancer management in humans. There has been overexpression of ''h''OAT within Hepatocellular carcinoma (HCC) cells, therefore there is reason to believe that the overexpression of ''h''OAT is an indication of chronic liver diseases and cancer of the liver.
''h''OAT is important because it is heavily involved in the urea cycle. In mammals, it dictates a large portion of the development of neonates. The research on this protein is relevant to science as a whole because it could directly impact cancer research and lead to the creation of cancer management in humans. There has been overexpression of ''h''OAT within Hepatocellular carcinoma (HCC) cells, therefore there is reason to believe that the overexpression of ''h''OAT is an indication of chronic liver diseases and cancer of the liver.
Line 15: Line 16:


== Structural highlights ==
== Structural highlights ==
<scene name='93/934005/Main_secondary_features/1'>Main Secondary Features</scene>


This is a sample scene created with SAT to <scene name="/12/3456/Sample/1">color</scene> by Group, and another to make <scene name="/12/3456/Sample/2">a transparent representation</scene> of the protein. You can make your own scenes on SAT starting from scratch or loading and editing one of these sample scenes.
This is a sample scene created with SAT to <scene name="/12/3456/Sample/1">color</scene> by Group, and another to make <scene name="/12/3456/Sample/2">a transparent representation</scene> of the protein. You can make your own scenes on SAT starting from scratch or loading and editing one of these sample scenes.

Revision as of 04:46, 13 December 2022

This Sandbox is Reserved from November 4, 2022 through January 1, 2023 for use in the course CHEM 351 Biochemistry taught by Bonnie Hall at the Grand View University, Des Moines, USA. This reservation includes Sandbox Reserved 1755 through Sandbox Reserved 1764.
To get started:
  • Click the edit this page tab at the top. Click on Show preview and then Save the page after each step, then edit it again.
  • show the Scene authoring tools, create a molecular scene, and save it. Copy the green link into the page.
  • Add a description of your scene. Use the buttons above the wikitext box for bold, italics, links, headlines, etc.

More help: Help:Editing

Your Heading Here (maybe something like 'Structure')

Caption for this structure

Drag the structure with the mouse to rotate

References

Butrin, A., Butrin, A., Wawrzak, Z., Moran, G. R., & Liu, D. (2022). Determination of the ph dependence, substrate specificity, and turnovers of alternative substrates for human ornithine aminotransferase. Journal of Biological Chemistry, 298(6), 101969. https://doi.org/10.1016/j.jbc.2022.101969