Main Page

From Proteopedia

(Difference between revisions)
Jump to: navigation, search
Line 20: Line 20:
<tr style="font-size: 1.2em; text-align: center;">
<tr style="font-size: 1.2em; text-align: center;">
-
<td style="padding: 10px;background-color: #33ff7b">Other Selected Pages</td>
+
<td style="padding: 10px;background-color: #33ff7b">[[:Category:Featured in Education|Other Selected Pages]]</td>
-
<td style="padding: 10px;background-color: #dae4d9">More Art on Science</td>
+
<td style="padding: 10px;background-color: #dae4d9">[[:Category:Featured in Education|More Art on Science]]</td>
-
<td style="padding: 10px;background-color: #f1b840">Other Journals</td>
+
<td style="padding: 10px;background-color: #f1b840">[[:Category:Featured in Education|Other Journals]]</td>
-
<td style="padding: 10px;background-color: #79baff">More on Education</td>
+
<td style="padding: 10px;background-color: #79baff">[[:Category:Featured in Education|More on Education]]</td>
</tr>
</tr>

Revision as of 13:21, 18 October 2018

Because life has more than 2D, Proteopedia helps to understand relationships between structure and function. Proteopedia is a free, collaborative 3D-encyclopedia of proteins & other molecules. ISSN 2310-6301

Selected Pages Art on Science Journals Education

Lifecycle of SARS-CoV-2

What happens if a SARS-CoV-2 coronavirus enters your lung? This molecular animation visualises how the virus particle can take over the host cell and turns it into a virus factory. Eventually, the host cell produces so many viral particles that it dies and releases numerous new virus particles. >>> Visit this page >>>

About this image
Molecular Sculpture

by Eric Martz
A historical review on sculptures and physical models of macromolecules.

>>> Visit this page >>>

About this image
Structural flexibility of the periplasmic protein, FlgA, regulates flagellar P-ring assembly in Salmonella enterica.

H Matsunami, YH Yoon, VA Meshcheryakov, K Namba, FA Samatey. Scientific Reports 2016 doi: 10.1038/srep27399
A periplasmic flagellar chaperone protein, FlgA, is required for P-ring assembly in bacterial flagella of taxa such as Salmonella enterica or Escherichia coli. Here we present the open and closed crystal structures of FlgA from Salmonella enterica serovar Typhimurium, grown under different crystallization conditions. An intramolecular disulfide cross-linked form of FlgA caused a dominant negative effect on motility of the wild-type strain.

>>> Visit this I3DC complement >>>

About this image
Tutorial: The Ramachandran principle, phi (φ) and psi (ψ) angles in proteins

by Eric Martz
The Ramachandran Principle says that alpha helices, beta strands, and turns are the most likely conformations for a polypeptide chain to adopt, because most other conformations are impossible due to steric collisions between atoms. Check Show Clashes to see where non-bonded atoms are overlapping, and thus in physically impossible positions.

>>> Visit this tutorial >>>

Other Selected Pages More Art on Science Other Journals More on Education
How to author pages and contribute to Proteopedia How to get an Interactive 3D Complement for your paper How to author pages and contribute to Proteopedia

Proteopedia Page Contributors and Editors (what is this?)

Joel L. Sussman, Jaime Prilusky

Personal tools