Human MRC1/CD206/MMR/CLEC13D Gene, Full-length cDNA Clone in Lentivector, Endotoxin-free DNA
MRC1, also known as MMR (macrophage mannose receptor 1), CD206 and CLEC13D (C-type lectin domain family 13 member D), is a single-pass type I transmembrane protein and a member of the mannose receptor family of the C-type lectin superfamily. MRC1 contains 8 C-type lectin domains, 1 fibronectin type-II domain and 1 ricin B-type lectin domain in the extracellular region. MRC1 mediates the endocytosis of glycoproteins by macrophages. MRC1 binds both sulfated and non-sulfated polysaccharide chains. MRC1 has been shown to bind high-mannose structures on the surface of potentially pathogenic viruses, bacteria, and fungi so that they can be neutralized by phagocytic engulfment. The recognition of complex carbohydrate structures on glycoproteins is an important part of several biological processes, including cell-cell recognition, serum glycoprotein turnover, and neutralization of pathogens. MRC1 acts as phagocytic receptor for bacteria, fungi and other pathogens. It also functions as a receptor for Dengue virus envelope protein E and interacts with hepatitis B virus envelope protein.
Gene Symbol: MRC1; MMR; hMR; CD206; MRC1L1; CLEC13D; CLEC13DL; bA541I19.1
NCBI Gene ID: 4360
Uniprot Entry: P22897
Construct Details: Full length human CD206 gene is subcloned into the Lentiviral expression vector pLTC with an upstream CMV promoter and with or without a selection marker, which can be used for both transient and stable expression in mammalian cells. It can be co-transfected with the LentiPAK DNA mix (SKU# LP-001) into HEK293 cells to produce high titer lentiviral particles. Multiple choices of a stable antibiotic selection marker are available.
Vector Type: pLTC or pLTC-IRES-Marker (lentiviral expression vector containing a heterologous CMV promoter, see the vector map above)
Formulation: Supplied with 10 μg of endotoxin-free plasmid DNA at 200 ng/μl in sterile TE buffer (pH8.0)
Gene Insert Size: 4371 (bp)
Gene Insert Sequence:
ATGAGGCTACCCCTGCTCCTGGTTTTTGCCTCTGTCATTCCGGGTGCTGTTCTCCTACTGGACACCAGGC
AATTTTTAATCTATAATGAAGATCACAAGCGCTGCGTGGATGCAGTGAGTCCCAGTGCCGTCCAAACCGC
AGCTTGCAACCAGGATGCCGAATCACAGAAATTCCGATGGGTGTCCGAATCTCAGATTATGAGTGTTGCA
TTTAAATTATGCCTGGGAGTGCCATCAAAAACGGACTGGGTTGCTATCACTCTCTATGCCTGTGACTCAA
AAAGTGAATTTCAGAAATGGGAGTGCAAAAATGACACACTTTTGGGGATCAAAGGAGAAGATTTATTTTT
TAACTACGGCAACAGACAAGAAAAGAATATTATGCTCTACAAGGGATCGGGTTTATGGAGCAGGTGGAAG
ATCTATGGAACCACAGACAATCTGTGCTCCAGAGGTTATGAAGCCATGTATACGCTACTAGGCAATGCCA
ATGGAGCAACCTGTGCATTCCCGTTCAAGTTTGAAAACAAGTGGTACGCAGATTGCACGAGTGCTGGGCG
GTCGGATGGATGGCTCTGGTGCGGAACCACTACTGACTATGACACAGACAAGCTATTTGGATATTGTCCA
TTGAAATTTGAGGGCAGTGAAAGCTTATGGAATAAAGACCCGCTGACCAGCGTTTCCTACCAGATAAACT
CCAAATCCGCTTTAACGTGGCACCAGGCGAGGAAAAGCTGCCAACAACAGAACGCTGAGCTCCTGAGCAT
CACAGAGATTCATGAGCAAACATACCTGACAGGATTAACCAGTTCCTTGACCTCAGGACTCTGGATTGGA
CTTAACAGTCTGAGCTTCAACAGCGGTTGGCAGTGGAGTGACCGCAGTCCTTTCCGATATTTGAACTGGT
TACCAGGAAGTCCATCAGCTGAACCTGGAAAAAGCTGTGTGTCACTAAATCCTGGAAAAAATGCTAAATG
GGAAAATCTGGAATGTGTTCAGAAACTGGGCTATATTTGCAAAAAGGGCAACACCACTTTAAATTCTTTT
GTTATTCCCTCAGAAAGTGATGTGCCTACTCACTGTCCTAGTCAGTGGTGGCCGTATGCCGGTCACTGTT
ACAAGATTCACAGAGATGAGAAAAAAATCCAGAGGGATGCTCTGACCACCTGCAGGAAGGAAGGCGGTGA
CCTCACAAGTATCCACACCATCGAGGAATTGGACTTTATTATCTCCCAGCTAGGATATGAGCCAAATGAC
GAATTGTGGATCGGCTTAAATGACATTAAGATTCAAATGTACTTTGAGTGGAGTGATGGGACCCCTGTAA
CGTTTACCAAATGGCTTCGTGGAGAACCAAGCCATGAAAACAACAGACAGGAGGATTGTGTGGTGATGAA
AGGCAAGGATGGGTACTGGGCAGATCGGGGCTGTGAGTGGCCTCTTGGCTACATCTGCAAGATGAAATCA
CGAAGCCAAGGTCCAGAAATAGTGGAAGTCGAAAAAGGCTGCAGGAAAGGCTGGAAAAAACATCACTTTT
ACTGCTATATGATTGGACATACGCTTTCAACATTTGCAGAAGCAAACCAAACCTGTAATAATGAGAATGC
TTATTTAACAACTATTGAAGACAGATATGAACAAGCCTTCCTGACTAGTTTCGTTGGCTTAAGGCCTGAA
AAATATTTCTGGACAGGACTTTCAGATATACAAACCAAAGGGACTTTTCAGTGGACCATCGAGGAAGAGG
TTCGGTTCACCCACTGGAATTCAGATATGCCAGGGCGAAAGCCAGGGTGTGTTGCCATGAGAACCGGGAT
TGCAGGGGGCTTATGGGATGTTTTGAAATGTGATGAAAAGGCAAAATTTGTGTGCAAGCACTGGGCAGAA
GGAGTAACCCACCCACCGAAGCCCACGACGACTCCCGAACCCAAATGTCCGGAGGATTGGGGCGCCAGCA
GTAGAACAAGCTTGTGTTTCAAGCTGTATGCAAAAGGAAAACATGAGAAGAAAACGTGGTTTGAATCTCG
AGATTTTTGTCGAGCTCTGGGTGGAGACTTAGCTAGCATCAATAACAAAGAGGAACAGCAAACAATATGG
CGATTAATAACAGCTAGTGGAAGCTACCACAAACTGTTTTGGTTGGGATTGACATATGGAAGCCCTTCAG
AAGGTTTTACTTGGAGTGATGGTTCTCCTGTTTCATATGAAAACTGGGCTTATGGAGAACCTAATAATTA
TCAAAATGTTGAATACTGTGGTGAGCTGAAAGGTGACCCTACTATGTCTTGGAATGATATTAATTGTGAA
CACCTTAACAACTGGATTTGCCAGATACAAAAAGGACAAACACCAAAACCTGAGCCAACACCAGCTCCTC
AAGACAATCCACCAGTTACTGAAGATGGGTGGGTTATTTACAAAGACTACCAGTATTATTTCAGCAAAGA
GAAGGAAACCATGGACAATGCGCGAGCGTTTTGCAAGAGGAATTTTGGTGATCTTGTTTCTATTCAAAGT
GAAAGTGAAAAGAAGTTTCTATGGAAATATGTAAACAGAAATGATGCACAGTCTGCATATTTTATTGGTT
TATTGATCAGCTTGGATAAAAAGTTTGCTTGGATGGATGGAAGCAAAGTGGATTACGTGTCTTGGGCCAC
AGGTGAACCCAATTTTGCAAATGAAGATGAAAACTGTGTGACCATGTATTCAAATTCAGGGTTTTGGAAT
GACATTAACTGTGGCTATCCAAACGCCTTCATTTGCCAGCGACATAACAGTAGTATCAATGCTACCACAG
TTATGCCTACCATGCCCTCGGTCCCATCAGGGTGCAAGGAAGGTTGGAATTTCTACAGCAACAAGTGTTT
CAAAATCTTTGGATTTATGGAAGAAGAAAGAAAAAATTGGCAAGAGGCACGAAAAGCTTGTATAGGCTTT
GGAGGGAATCTGGTCTCCATACAAAATGAAAAAGAGCAAGCATTTCTTACCTATCACATGAAGGACTCCA
CTTTCAGTGCCTGGACTGGGCTGAATGATGTCAATTCAGAACACACGTTCCTTTGGACGGATGGACGAGG
AGTCCATTACACAAACTGGGGGAAAGGTTACCCTGGTGGAAGAAGAAGCAGTCTTTCTTATGAAGATGCT
GACTGTGTTGTTATTATTGGAGGTGCATCAAATGAAGCAGGAAAATGGATGGATGATACCTGCGACAGTA
AACGAGGCTACATATGCCAGACACGATCCGACCCTTCCTTGACTAATCCTCCAGCAACGATTCAAACAGA
TGGCTTTGTTAAATATGGCAAAAGCAGCTATTCACTCATGAGACAAAAATTTCAATGGCATGAAGCGGAG
ACATACTGCAAGCTTCACAATTCCCTTATAGCCAGCATTCTGGATCCCTACAGTAATGCATTTGCGTGGC
TGCAGATGGAAACATCTAATGAACGTGTGTGGATCGCCCTGAACAGTAACTTGACTGATAATCAATACAC
TTGGACTGATAAGTGGAGGGTGAGGTACACTAACTGGGCTGCTGATGAGCCCAAATTGAAATCAGCATGT
GTTTATCTGGATCTTGATGGCTACTGGAAGACAGCACATTGCAATGAAAGTTTTTACTTTCTCTGTAAAA
GATCAGATGAAATCCCTGCTACTGAACCCCCACAACTGCCTGGCAGATGCCCGGAGTCAGATCACACAGC
ATGGATTCCTTTCCATGGTCACTGTTACTATATTGAGTCCTCATATACAAGAAACTGGGGCCAAGCTTCT
CTGGAATGTCTTCGAATGGGTTCCTCTCTGGTTTCCATTGAAAGTGCTGCAGAATCCAGTTTTCTGTCAT
ATCGGGTTGAGCCACTTAAAAGTAAAACCAATTTTTGGATAGGATTGTTCAGAAATGTTGAAGGGACGTG
GCTGTGGATAAATAACAGTCCGGTCTCCTTTGTCAACTGGAACACAGGAGATCCCTCTGGTGAACGGAAT
GATTGTGTAGCTTTACATGCGTCTTCTGGGTTTTGGAGTAATATTCACTGTTCATCCTACAAAGGATATA
TTTGTAAAAGACCAAAAATTATTGATGCTAAACCTACTCATGAATTACTTACAACAAAAGCTGACACAAG
GAAGATGGACCCTTCTAAACCGTCTTCCAACGTGGCCGGAGTAGTCATCATTGTGATCCTCCTGATTTTA
ACGGGTGCTGGCCTTGCCGCCTATTTCTTTTATAAGAAAAGACGTGTGCACCTACCTCAAGAGGGCGCCT
TTGAAAACACTCTGTATTTTAACAGTCAGTCAAGCCCAGGAACTAGTGATATGAAAGATCTCGTGGGCAA
TATTGAACAGAATGAACACTCGGTCATCTAG
Primers: Gene insert coding sequence can be confirmed by following primers:
(a) forward (or 5'-end) primer: 5’-CAAATGGGCGGTAGGCGTG-3’;
(b) reverse (or 3'-end) primer: 5’-CCAGGTTTCCGGGCCCTCAC-3’
Note: The sequence may vary due to the naturally occurring variants or mutations, such as single nucleotide polymorphism, or the artifact during PCR amplification. High fidelity PCR systems should always be used.
FOR RESEARCH USE ONLY. NOT FOR DIAGNOSTIC OR THERAPEUTIC USE IN HUMAN.
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The product is shipped at 4°C. Upon receipt, centrifuge the product briefly before opening the vial. It is recommended to store small aliquots at the temperature below –20°C for long-term storage and the product is stable for 6 months.
Use a manual defrost freezer and avoid repeated freeze-thaw cycles.
FOR RESEARCH USE ONLY. NOT FOR DIAGNOSTIC OR THERAPEUTIC USE IN HUMAN.
Additional supporting documents, including PDS, COA and MSDS are available upon request.
FOR RESEARCH USE ONLY. NOT FOR DIAGNOSTIC OR THERAPEUTIC USE IN HUMAN.