Backbone representations
From Proteopedia
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==Protein Domain Example== | ==Protein Domain Example== | ||
| - | Now lets look at a <scene name='59/599354/Domain/1'>small protein domain</scene> ([[1pgb]]). This domain contains the alpha helix used above, but also contains a small beta sheet made of four beta strands, plus loops (regions that are neither alpha helix nor beta strand) connecting the helices and strands. The helices and strands are represented as ribbons, while the "ropes" connecting them are smoothed backbone traces. This type of representation is properly called a '''secondary structure schematic''', but is called a '''cartoon''' in [[ | + | Now lets look at a <scene name='59/599354/Domain/1'>small protein domain</scene> ([[1pgb]]). This domain contains the alpha helix used above, but also contains a small beta sheet made of four beta strands, plus loops (regions that are neither alpha helix nor beta strand) connecting the helices and strands. The helices and strands are represented as ribbons, while the "ropes" connecting them are smoothed backbone traces. This type of representation is properly called a '''secondary structure schematic''', but is called a '''cartoon''' in [[Jmol]] and its family of ancestral visualization programs ([[RasMol]], [[Chime]]). '''Arrowheads''' point towards the carboxy terminus. |
*Lets <scene name='59/599354/Domain/2'>color by secondary structure</scene>: | *Lets <scene name='59/599354/Domain/2'>color by secondary structure</scene>: | ||
Revision as of 15:41, 20 September 2014
Backbone representations are simplified 3D depictions of proteins or nucleic acids that enable the polymer chain structure to be seen. In proteins, a simple backbone trace connects alpha carbons (shown as balls in the ) but the backbone trace line does not coincide with any of the covalent bonds in the main chain.
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