Difference between revisions of "Team:HokkaidoU Japan/Overview"

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<p> Recently, SAPs have been regarded as good biological material. We considered new application methods of SAPs through discussions. Finally, we decided to make a platform of technology for constructing multi-enzyme-complex by using Self-Assembling Regions (SARs) and they are covalently linked each other through disulfide bonds. They could be assemble multiple enzymes ring (Self-AssembRing).  </p>
 
<p> Recently, SAPs have been regarded as good biological material. We considered new application methods of SAPs through discussions. Finally, we decided to make a platform of technology for constructing multi-enzyme-complex by using Self-Assembling Regions (SARs) and they are covalently linked each other through disulfide bonds. They could be assemble multiple enzymes ring (Self-AssembRing).  </p>
 
<center><img src="https://static.igem.org/mediawiki/2016/0/08/T--HokkaidoU_Japan--multimerization_image7.png" alt="large block" height="300px" width="auto"></center>
 
<center><img src="https://static.igem.org/mediawiki/2016/0/08/T--HokkaidoU_Japan--multimerization_image7.png" alt="large block" height="300px" width="auto"></center>
<p>In the future, we will construct tool for making subunits of artificial multi-enzyme-complex. </p>
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<p>In the future, we will construct tool for making subunits of artificial multi-enzyme-complex by using this technology. </p>
  
  
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<p><div id="Background"><img src="https://static.igem.org/mediawiki/2016/1/1c/T--HokkaidoU_Japan--background.png"  
 
<p><div id="Background"><img src="https://static.igem.org/mediawiki/2016/1/1c/T--HokkaidoU_Japan--background.png"  
 
width="270px" height="90px" alt="background"></div></p>
 
width="270px" height="90px" alt="background"></div></p>
<br>Recently, self-assembling peptides (SAPs) have been remarked as a biological material
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<p>
It is necessary for enhancement of enzymatic activities in biochemistry.  
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Recently, self-assembling peptides (SAPs) have been remarked as a biological nanostructures and hydrogel because SAPs are fit to biogenic and don’t have cytotoxicity.
自己組織化ペプチドについて
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SAPs such as a scaffold for cell culturing and drug delivering in tissue engineering and medical technology.  
近年tissue engineeringにおいて非常に注目されてきた物質である.
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</p>
酵素環状化,酵素活性の強化にはいろいろあるが…
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→ハイデルベルグからインスピレーションを受けた
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<p>
多量体形成は
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Kill switchいろいろ方法あるが…体の水分を吸い取って代謝速度下げるなど
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<br>
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<br>
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<p><div id="Achievement"><img src="https://static.igem.org/mediawiki/2016/9/99/T--HokkaidoU_Japan--achievements.png"  
 
<p><div id="Achievement"><img src="https://static.igem.org/mediawiki/2016/9/99/T--HokkaidoU_Japan--achievements.png"  
 
width="270px" height="90px" alt="achievements"></div></p>
 
width="270px" height="90px" alt="achievements"></div></p>
 
<br>
 
<br>
 
Bronze
 
Bronze
We completed the team registration.
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<p>We completed the team registration.
We wrote team wiki.
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<p>We wrote team wiki.
Poster and a talk for the iGEM Jamboree are ready.
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<p>Poster and a talk for the iGEM Jamboree are ready.
We described all attributions clearly.
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<p>We described all attributions clearly.
We created and documented Parts pages.
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<p>We created and documented Parts pages.
We submitted DNA samples of our new BioBrick Parts.
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<p>We submitted DNA samples of our new BioBrick Parts.
We filled out Safety forms.
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<p>We filled out Safety forms.
We filled out Judging form.</br>
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<p>We filled out Judging form.</br>
  
 
<br>
 
<br>
 
Silver
 
Silver
We validated our new BioBrick parts.
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<p>We validated our new BioBrick parts.
We collaborated with other iGEM teams (Gifu, Kyoto, Nagahama, UT-tokyo, METU HS Ankara, Heidelberg)
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<p>We collaborated with other iGEM teams (Gifu, Kyoto, Nagahama, UT-tokyo, METU HS Ankara, Heidelberg)
We considered that prevalence of synthetic biology
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<p>We considered that prevalence of synthetic biology
 
</br>
 
</br>
 
<br>
 
<br>
 
Gold
 
Gold
We improved a previous part.
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<p>We improved a previous part.
We demonstrated a functional proof of concept of our project.
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<p>We demonstrated a functional proof of concept of our project.
 
</br>
 
</br>
 
<br>
 
<br>
  
 
</html>
 
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Revision as of 16:10, 16 October 2016

Team:HokkaidoU Japan - 2016.igem.org

 

Team:HokkaidoU Japan

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Project description

We considered possible application of self-assembling peptides (SAPs). SAPs have a self-assembling ability because they are amphiphilic peptides and contain hydrophobic and hydrophilic residues. These electric charged amino acids interact with one another to form spontaneously antiparallel β-sheet in a physiochemical environmental condition.

In this projects, we used one of SAPs, RADA-16-I(RADARADARADARADA) and P11-4 (QQRFEWEFEQQ).

RADA P11-4

RADA-16-I has been established for 3-D culture of neural stem cells (NSCs) by creating nanostructures. P11-4 has been designed to form fibers at low pH and have a cytocompatibility.

Recently, SAPs have been regarded as good biological material. We considered new application methods of SAPs through discussions. Finally, we decided to make a platform of technology for constructing multi-enzyme-complex by using Self-Assembling Regions (SARs) and they are covalently linked each other through disulfide bonds. They could be assemble multiple enzymes ring (Self-AssembRing).

large block

In the future, we will construct tool for making subunits of artificial multi-enzyme-complex by using this technology.


background

Recently, self-assembling peptides (SAPs) have been remarked as a biological nanostructures and hydrogel because SAPs are fit to biogenic and don’t have cytotoxicity. SAPs such as a scaffold for cell culturing and drug delivering in tissue engineering and medical technology.

achievements


Bronze

We completed the team registration.

We wrote team wiki.

Poster and a talk for the iGEM Jamboree are ready.

We described all attributions clearly.

We created and documented Parts pages.

We submitted DNA samples of our new BioBrick Parts.

We filled out Safety forms.

We filled out Judging form.

Silver

We validated our new BioBrick parts.

We collaborated with other iGEM teams (Gifu, Kyoto, Nagahama, UT-tokyo, METU HS Ankara, Heidelberg)

We considered that prevalence of synthetic biology

Gold

We improved a previous part.

We demonstrated a functional proof of concept of our project.