Difference between revisions of "Part:BBa K2593006"

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<partinfo>BBa_K2593006 short</partinfo>
 
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<h4>PlepA-RBS-AmyX -6His-LHyal-T1  </h4>
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<p>This composite part consists of a promoter, an RBS, a signal peptide from Bacillus origin (AmyX), a coding sequence (LHAases) with a 6-His tag fused to its N-terminus, and a terminator. <br>
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<b>Biology </b><br>
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<b>PlepA (<a href="https://parts.igem.org/Part:BBa_K823002">BBa_K823002</a>) </b>is the promoter of the lepA gene of Bacillus subtilis. It is a constitutive promoter and does not contain a ribosome binding site. <br>
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PlepA is a strong constitutive promoter which was derived from the bicistronic operon. One of the expressed proteins in the operon is protein PlepA. This protein plays an important role during the translation as it can move the mRNA-tRNA complex one step back in the ribosome which is expected to improve the fidelity of translation.<br>
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<b>RBS (<a href="https://parts.igem.org/Part:BBa_K2593005">BBa_K2593005</a>):</b>The strong ribosome binding site (RBS) is a shine-Dalgarno sequence from gsiB gene. It can lead to a pronounced stimulation of expression when placed upstream of a variety of genes, and significant increase in the translation of the genes is observed.<br>
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<b>AmyX-6His-LHyal (<a href="https://parts.igem.org/Part:BBa_K2593009">BBa_K2593009</a>):</b>AmyX signal peptide: AmyX signal peptide is encoded by a-Amylase gene which is derived from B.amyloliquefaciens. AmyX signal peptide belongs to twin-arginine translocation (Tat) pathway of the Bacillus origin. The Tat pathway has a signature twin-arginine (RR) motif located at the border of the N-terminal domain and the hydrophobic region. The Tat systems of Gram-positive bacteria exhibit interesting differences to those of Gram-negative bacteria, the most striking of which is the absence of a TatB component in virtually all species. In Gram-negative bacteria, membrane-bound TatABC subunits are all essential for activity, whereas Gram-positive bacteria usually contain only TatAC subunits. In Bacillus subtilis, there are two TatAC-type systems, TatAdCd and TatAyCy, operate in parallel with different substrate specificities. in our project AmyX was fused in N-terminal of the LHyal gene for the extracellular export of the expressed protein.<br>
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6xHis: Currently His-tags have been extensively applied for recombinant protein expression. Based on previous research, 6His-tag could provide enough spacing for protein folding to prevent crystallization or misfolding of peptide chain, and it is a commonly used in protein purification by chromatography.<br>
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LHyal gene encodes LHAase (Mw=58kD), which is a hyaluronidases from the hyaluronate 3-glycanohydrolases sub-family of leech origin. Hyaluronidase (HAase) is a large family of glycoside hydrolases that predominantly degrades hyaluronic acid (HA), which is a polysaccharide composed of disaccharides unit of N-acetyl glucosamine and glucuronic acid polymerization.<br>
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<b>T1 terminator(<a href="https://parts.igem.org/Part:BBa_B0010">BBa_B0010</a>):</b>
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, it is the most used terminator in E. coli system.<br>
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Usage
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In our project this year, this device worked to produce low-molecular weight HA. HA was hydrolyzed to oligosaccharide on hydrolyzingβ-1.3 glucosidic bonds via LHAase in a non-processive endolytic mode.
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<b>[SDS-PAGE]</b>
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<b>[DNS]</b>
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<b>[Elisa]</b>
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T
 
T

Revision as of 03:43, 6 October 2018


PlepA-RBS-AmyX -6His-LHyal-T1

PlepA-RBS-AmyX -6His-LHyal-T1

This composite part consists of a promoter, an RBS, a signal peptide from Bacillus origin (AmyX), a coding sequence (LHAases) with a 6-His tag fused to its N-terminus, and a terminator.
Biology
PlepA (BBa_K823002) is the promoter of the lepA gene of Bacillus subtilis. It is a constitutive promoter and does not contain a ribosome binding site.
PlepA is a strong constitutive promoter which was derived from the bicistronic operon. One of the expressed proteins in the operon is protein PlepA. This protein plays an important role during the translation as it can move the mRNA-tRNA complex one step back in the ribosome which is expected to improve the fidelity of translation.
RBS (BBa_K2593005):The strong ribosome binding site (RBS) is a shine-Dalgarno sequence from gsiB gene. It can lead to a pronounced stimulation of expression when placed upstream of a variety of genes, and significant increase in the translation of the genes is observed.
AmyX-6His-LHyal (BBa_K2593009):AmyX signal peptide: AmyX signal peptide is encoded by a-Amylase gene which is derived from B.amyloliquefaciens. AmyX signal peptide belongs to twin-arginine translocation (Tat) pathway of the Bacillus origin. The Tat pathway has a signature twin-arginine (RR) motif located at the border of the N-terminal domain and the hydrophobic region. The Tat systems of Gram-positive bacteria exhibit interesting differences to those of Gram-negative bacteria, the most striking of which is the absence of a TatB component in virtually all species. In Gram-negative bacteria, membrane-bound TatABC subunits are all essential for activity, whereas Gram-positive bacteria usually contain only TatAC subunits. In Bacillus subtilis, there are two TatAC-type systems, TatAdCd and TatAyCy, operate in parallel with different substrate specificities. in our project AmyX was fused in N-terminal of the LHyal gene for the extracellular export of the expressed protein.
6xHis: Currently His-tags have been extensively applied for recombinant protein expression. Based on previous research, 6His-tag could provide enough spacing for protein folding to prevent crystallization or misfolding of peptide chain, and it is a commonly used in protein purification by chromatography.
LHyal gene encodes LHAase (Mw=58kD), which is a hyaluronidases from the hyaluronate 3-glycanohydrolases sub-family of leech origin. Hyaluronidase (HAase) is a large family of glycoside hydrolases that predominantly degrades hyaluronic acid (HA), which is a polysaccharide composed of disaccharides unit of N-acetyl glucosamine and glucuronic acid polymerization.
T1 terminator(BBa_B0010): , it is the most used terminator in E. coli system.
Usage In our project this year, this device worked to produce low-molecular weight HA. HA was hydrolyzed to oligosaccharide on hydrolyzingβ-1.3 glucosidic bonds via LHAase in a non-processive endolytic mode. [SDS-PAGE] [DNS] [Elisa]

T Sequence and Features


Assembly Compatibility:
  • 10
    INCOMPATIBLE WITH RFC[10]
    Unknown
  • 12
    INCOMPATIBLE WITH RFC[12]
    Unknown
  • 21
    INCOMPATIBLE WITH RFC[21]
    Unknown
  • 23
    INCOMPATIBLE WITH RFC[23]
    Unknown
  • 25
    COMPATIBLE WITH RFC[25]
  • 1000
    INCOMPATIBLE WITH RFC[1000]
    Illegal BsaI site found at 561