Difference between revisions of "Part:BBa K4586015"

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lang=EN style='font-size:11.0pt;line-height:115%'>The study used the ribosomal protein L7a (E109) antibody, which appeared green, to make a confocal immunofluorescent analysis of COS cells. They labeled actin filaments with Alexa Fluor phalloidin 555, which appear red. DRAQ5 #4084 (fluorescent DNA dye) appeared as a blue pseudocolor. The antibody stains ribosomes at their biogenesis location in nucleoli.
 
lang=EN style='font-size:11.0pt;line-height:115%'>The study used the ribosomal protein L7a (E109) antibody, which appeared green, to make a confocal immunofluorescent analysis of COS cells. They labeled actin filaments with Alexa Fluor phalloidin 555, which appear red. DRAQ5 #4084 (fluorescent DNA dye) appeared as a blue pseudocolor. The antibody stains ribosomes at their biogenesis location in nucleoli.
 
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==Characterization By Mutational Landscape==
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In order to optimize the function of our parts, we've used the concept of Directed Evolution through applying different mutations and measuring the effects of these mutations on their evolutionary epistatic fitness.  As displayed in the chart below, the mutation (N80K) shows the highest epistatic fitness, while the lowest score was associated with the mutation (N99F).
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lang=EN style='font-size:11.0pt;line-height:115%'>Figure . An illustration of the effects of different mutations on the Epistatic Fitness of L7ae.
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==References==
 
==References==
 
Russo, G. et al. (2005) Biochem J. 385, 289-299.
 
Russo, G. et al. (2005) Biochem J. 385, 289-299.

Revision as of 17:03, 3 October 2023


L7Ae

Part Description

L7Ae is a 50S ribosomal protein that is considered an RNA-binding protein. It has the ability to recognize its K-turn motif or C/D box in ribosomal RNA and can be used to build more complicated genetic circuits that are regulated at both the translational and transcriptional levels as well as as an adapter for RNA binding in the extracellular vesicles.

Usage

Our team uses this part in loading our cargo into the exosomes. By binding to the C/D boxes to load a specific RNA into the vesicles, we fused it to RNA-motifs, which are bound specifically by RNA-binding proteins as shown in figure 1. and figure 2.

Figure 1: This figure illustrates the mechanism of loading our therapeutic agent in the form of mRNA selectively and efficiently into our engineered exosomes secreted form the MSCs,this loading is done through labeling the gene of interest with C\D box a hairpin structure IN THE 3` end this box have high affinity to the RNA binding protein L7Ae that is expressed on the internal surface of the engineered exosomes membrane conjugated to his tagged CD63 protein that is a natural highly expressed transmembrane protein within the exosomes.






Figure 2: This figure shows the design of the biological circuit expressing our loading system on the exosomes membrane ,this system consists of two main component ,First the RNA binding protein L7Ae conjugated to the second component, which is CD3 a transmembrane protein that is naturally expressed on the exosomes membrane.

Literature Characterization

The study made Western blot analysis and confocal immunofluorescent analyses of different cell lines using the L7a (E109) antibody.

By using Ribosomal Protein L7a (E109) Antibody, the study made Western blot analyses of extracts from various cell lines.





The study used the ribosomal protein L7a (E109) antibody, which appeared green, to make a confocal immunofluorescent analysis of COS cells. They labeled actin filaments with Alexa Fluor phalloidin 555, which appear red. DRAQ5 #4084 (fluorescent DNA dye) appeared as a blue pseudocolor. The antibody stains ribosomes at their biogenesis location in nucleoli.

Characterization By Mutational Landscape

In order to optimize the function of our parts, we've used the concept of Directed Evolution through applying different mutations and measuring the effects of these mutations on their evolutionary epistatic fitness. As displayed in the chart below, the mutation (N80K) shows the highest epistatic fitness, while the lowest score was associated with the mutation (N99F).

Figure . An illustration of the effects of different mutations on the Epistatic Fitness of L7ae.

References

Russo, G. et al. (2005) Biochem J. 385, 289-299. Sequence and Features


Assembly Compatibility:
  • 10
    COMPATIBLE WITH RFC[10]
  • 12
    COMPATIBLE WITH RFC[12]
  • 21
    COMPATIBLE WITH RFC[21]
  • 23
    COMPATIBLE WITH RFC[23]
  • 25
    COMPATIBLE WITH RFC[25]
  • 1000
    COMPATIBLE WITH RFC[1000]