Biomod/2014/Kansai/Results: Difference between revisions
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We had difficulty to coupling dumbbell hairpins on the direction orthogonal to the origami. | |||
It is solved to use 3 sheets of DNA origami. And the form is closer to ideal (Form of the QR code) than 1 sheet of DNA origami. <br> <br> | It is solved to use 3 sheets of DNA origami. And the form is closer to ideal (Form of the QR code) than 1 sheet of DNA origami. <br> <br> | ||
<u>Aspect ratio of 1dot</u><br> | <u>Aspect ratio of 1dot</u><br> | ||
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|Width ||:2 pitch 3.4nm×2=6.8 nm | |Width ||:2 pitch 3.4nm×2=6.8 nm | ||
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We use 3 types of DNA origami. Normally, we need 600 pieces of DNA staple (200 pieces per one DNA origami). But, despite of DNA staples that is modified dumbbell hairpins, DNA staples are shared among 3 types of DNA origami. So we are quit for 359 pieces of DNA staple. | |||
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Revision as of 00:00, 8 August 2014
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Top | Team | Project | Design | Experiment and Result |
Sources | Etc. |
Problem & Solution
We had difficulty to coupling dumbbell hairpins on the direction orthogonal to the origami.
It is solved to use 3 sheets of DNA origami. And the form is closer to ideal (Form of the QR code) than 1 sheet of DNA origami.
Aspect ratio of 1dot
Vertical width | :2DNA 3nm×2=6 nm |
Width | :2 pitch 3.4nm×2=6.8 nm |
We use 3 types of DNA origami. Normally, we need 600 pieces of DNA staple (200 pieces per one DNA origami). But, despite of DNA staples that is modified dumbbell hairpins, DNA staples are shared among 3 types of DNA origami. So we are quit for 359 pieces of DNA staple.