Difference between revisions of "Part:BBa K2547000"

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&nbsp;&nbsp;&nbsp;&nbsp;We first synthesized the sequence of human carbonic anhydrase CA2, and then cloned it into the expression vector pET-30a(+), and identified the correctness of the obtained recombinant vector by restriction enzyme digestion and sequencing (Fig. 1 and Fig. 2).<br></p>
 
&nbsp;&nbsp;&nbsp;&nbsp;We first synthesized the sequence of human carbonic anhydrase CA2, and then cloned it into the expression vector pET-30a(+), and identified the correctness of the obtained recombinant vector by restriction enzyme digestion and sequencing (Fig. 1 and Fig. 2).<br></p>
<div align="center">&nbsp;&nbsp;&nbsp;&nbsp;https://static.igem.org/mediawiki/parts/2/29/T--AHUT_China--_part111.jpg
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https://static.igem.org/mediawiki/parts/2/29/T--AHUT_China--_part111.jpg
 
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<p style="font-family: 'Arial Unicode MS', 'Microsoft YaHei UI', 'Microsoft YaHei UI Light', '华文细黑', '微软雅黑', '幼圆';  font-size: 14px;text-align: center;">Fig. 1 Map of CA2-WT recombinant vector
 
<p style="font-family: 'Arial Unicode MS', 'Microsoft YaHei UI', 'Microsoft YaHei UI Light', '华文细黑', '微软雅黑', '幼圆';  font-size: 14px;text-align: center;">Fig. 1 Map of CA2-WT recombinant vector

Revision as of 11:40, 12 October 2018


Carbonic anhydrase 2


This part is the coding sequence (CDS) of human carbonic anhydrase (CA2), because Carbonic Anhydrase II (CA2) is a metalloenzyme that can efficiently catalyze the formation of HCO3- from CO2 and H2O. This reaction is highly efficient with H+. The reaction rate is extremely fast, and the histidine tag (His-Tag) is linked to the coding sequence (CDS) to facilitate the purification of carbonic anhydrase protein.

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]


    We first synthesized the sequence of human carbonic anhydrase CA2, and then cloned it into the expression vector pET-30a(+), and identified the correctness of the obtained recombinant vector by restriction enzyme digestion and sequencing (Fig. 1 and Fig. 2).

    

T--AHUT_China--_part111.jpg

Fig. 1 Map of CA2-WT recombinant vector

T--AHUT_China--_part222.jpg

Fig. 2 Agarose Gel Electrophoresis of CA2-WT recombinant plasmid and its identification by enzyme digestion. Lane M: DL marker; Lane 1: CA2-WT recombinant plasmid; Lane 2: enzyme digestion band of CA2-WT digested by MluⅠ, the length was 1028 bp (the arrow indicated).

Induced expression of CA2-WT

    The CA2-WT expression plasmid was transformed into E. coli BL21 (DE3), and the cultured liquid was subjected to IPTG-induced CA2 expression, and the bacterial solution was sonicated, followed by SDS-PAGE and Western Blot(Fig. 3 and Fig. 4) .It shows that the size of CA2 is 30.6 kDa, which is compared with Marker. The position indicated by the arrow in the figure is the CA2 band. It can be seen from lanes 1 and 2 in the figure that the IPTG condition is significantly induced. The expression of CA2, and it can be seen from lanes 3-6, that the induced expression of CA2 is mainly expressed in a soluble form in the supernatant of the bacterial liquid.The above results indicate that we successfully obtained E. coli which expresses CA2.

    T--AHUT_China--_part333.jpg

Fig. 3 SDS-PAGE analysis for CA2 cloned in pET-30a(+) and expressed in BL21(DE3) strain.

     T--AHUT_China--_part444.jpg

Fig. 4Western blot analysis for CA2 cloned in pET-30a(+) and expressed in BL21(DE3) strain.

Purification of CA2-WT

    After confirming that CA2 can be induced by E. coli BL21 (DE3), we will further purify the crude protein extract by nickel column purification to obtain purified CA2 protein. The results in the figure (Figures 5 and 6) illustrate that we have obtained a higher purity CA2 protein.

     T--AHUT_China--_part444.jpg

Fig. 5 CA2 was purified with Ni column; fractions were analyzed by SDS-PAGE. Lane M: Protein marker; Lane 1: Supernatant after cell lysate centrifugation; Lane 2: Flow through; Lane 3: Wash with 50mM Tris, 150mM NaCl, 20 mM Imidazole, pH 8.0; Lane 4: Elute with 50mM Tris, 150mM NaCl, 50 mM Imidazole, pH 8.0; Lane 5: Elute with 50mM Tris, 150mM NaCl, 500 mM Imidazole, pH 8.0.

     T--AHUT_China--_part444.jpg

Fig. 6 SDS-PAGE and Western blot analysis of CA2. Lane 1: Positive control (BSA); Lane 2: purified CA2; Lane 3: Purified CA2.