Human KCNB1/DRK1/Kv2.1 ORF/cDNA clone-Lentivirus particle (NM_004975)
Cat. No.: vGMLP001673
Pre-made Human KCNB1/DRK1/Kv2.1 Lentiviral expression plasmid for KCNB1 lentivirus packaging, KCNB1 lentivirus production, overexpression stable cell line development, cell transient transfection and gene delivery targeting T/B/NK cells, macrophages, cardiomyocytes, hepatocytes, and neurons.
The GM Vector Core (GMVC) specializes in custom lentivirus development and offers a range of lentivirus manufacturing solutions, leveraging state-of-the-art processes. Learn more about our services.
Go to
KCNB1/DRK1 products
collection>>
(antibodies,
antigen, VLP, mRNA, ORF viral vector, etc)
Catalog No. | Product Name | lentivirus Grade | lentivirus quantity |
---|---|---|---|
vGMLP001673 | Human KCNB1 Lentivirus particle | Pilot Grade | 1.0E+8TU |
5.0E+8TU | |||
1.0E+9TU | |||
Research Grade | 1.0E+8TU | ||
5.0E+8TU | |||
1.0E+9TU | |||
GMP-like Grade | inquiry | ||
GMP Grade | inquiry |
Product Description
Catalog ID | vGMLP001673 |
Gene Name | KCNB1 |
Accession Number | NM_004975 |
Gene ID | 3745 |
Species | Human |
Product Type | Lentivirus particle (overexpression) |
Insert Length | 2577 bp |
Gene Alias | DRK1,Kv2.1 |
Fluorescent Reporter | ZsGreen |
Mammalian Cell Selection | Puromyocin |
Fusion Tag | 3xflag (C-Terminal) |
Promoter | CMV |
Resistance | Amplicin |
ORF Nucleotide Sequence | ATGCCGGCGGGCATGACGAAGCATGGCTCCCGCTCCACCAGCTCGCTGCCGCCCGAGCCCATGGAGATCGTGCGCAGCAAGGCGTGCTCTCGGCGGGTCCGCCTCAACGTCGGGGGGCTGGCGCACGAGGTACTCTGGCGTACCCTGGACCGCCTGCCCCGCACGCGGCTGGGCAAGCTCCGCGACTGCAACACGCACGACTCGCTGCTCGAGGTGTGCGATGACTACAGCCTCGACGACAACGAGTACTTCTTTGACCGCCACCCGGGCGCCTTCACCTCCATCCTCAACTTCTACCGCACTGGGCGACTGCACATGATGGAGGAGATGTGCGCGCTCAGCTTCAGCCAAGAGCTCGACTACTGGGGCATCGACGAGATCTACCTGGAGTCCTGCTGCCAGGCCCGCTACCACCAGAAGAAAGAGCAGATGAACGAGGAGCTCAAGCGTGAGGCCGAGACCCTACGGGAGCGGGAAGGCGAGGAGTTCGATAACACGTGCTGCGCAGAGAAGAGGAAAAAACTCTGGGACCTACTGGAGAAGCCCAATTCCTCTGTGGCTGCCAAGATCCTTGCCATAATTTCCATCATGTTCATCGTCCTCTCCACCATTGCCCTGTCCCTCAACACGCTGCCTGAGCTACAGAGCCTCGATGAGTTCGGCCAGTCCACAGACAACCCCCAGCTGGCCCACGTGGAGGCCGTGTGCATCGCATGGTTCACCATGGAGTACCTGCTGAGGTTCCTCTCCTCGCCCAAGAAGTGGAAGTTCTTCAAGGGCCCACTCAATGCCATTGACTTGTTGGCCATTCTGCCATACTATGTCACCATTTTCCTCACCGAATCCAACAAGAGCGTGCTGCAATTCCAGAATGTCCGCCGCGTGGTCCAGATCTTCCGCATCATGCGAATTCTCCGCATCCTTAAGCTTGCACGCCACTCCACTGGCCTCCAGTCTCTGGGCTTCACTTTGCGGAGGAGCTACAATGAGTTGGGCTTGCTCATCCTCTTCCTTGCCATGGGCATTATGATCTTCTCCAGCCTTGTCTTCTTTGCTGAGAAGGATGAGGACGACACCAAGTTCAAAAGCATCCCAGCCTCTTTCTGGTGGGCCACCATCACCATGACTACTGTTGGGTATGGAGACATCTACCCCAAGACTCTCCTGGGGAAAATTGTTGGGGGACTCTGCTGCATTGCAGGAGTCCTGGTGATTGCTCTTCCCATCCCCATCATCGTCAATAACTTCTCTGAGTTCTATAAGGAGCAGAAGAGACAGGAGAAAGCAATCAAACGGCGAGAGGCTCTGGAGAGAGCCAAGAGGAATGGCAGCATCGTATCCATGAACATGAAGGATGCTTTTGCCCGGAGCATTGAGATGATGGACATTGTGGTTGAGAAAAATGGGGAGAATATGGGTAAGAAAGACAAAGTACAAGATAACCACTTGTCTCCTAACAAATGGAAATGGACAAAGAGGACACTGTCTGAAACCAGCTCAAGTAAGTCCTTTGAAACCAAGGAACAGGGATCCCCTGAAAAAGCCAGATCGTCTTCTAGTCCTCAGCACCTGAACGTTCAGCAGTTGGAAGACATGTACAATAAGATGGCCAAGACCCAATCCCAACCCATCCTCAATACCAAGGAGTCAGCAGCACAGAGCAAACCAAAGGAAGAACTTGAAATGGAGAGTATCCCCAGCCCCGTAGCCCCTCTGCCCACTCGCACAGAAGGGGTCATTGACATGCGAAGTATGTCAAGCATTGATAGTTTCATTAGCTGTGCCACAGACTTCCCTGAGGCCACCAGATTCTCCCACAGCCCTTTGACATCACTCCCCAGCAAGACTGGGGGCAGCACAGCCCCAGAAGTGGGCTGGCGGGGAGCTCTGGGTGCCAGTGGTGGTAGGTTTGTGGAGGCCAACCCCAGCCCTGATGCCAGCCAGCACTCTAGTTTCTTCATCGAGAGCCCCAAGAGTTCCATGAAAACTAACAACCCTTTGAAGCTCCGAGCACTTAAAGTCAACTTCATGGAGGGTGACCCCAGTCCACTCCTCCCCGTTCTAGGGATGTACCATGACCCTCTCAGGAACCGGGGGAGTGCTGCGGCTGCTGTCGCTGGACTGGAGTGTGCCACGCTTTTGGACAAGGCTGTGCTGAGCCCAGAGTCCTCCATCTACACCACAGCAAGTGCTAAGACACCCCCCCGGTCTCCTGAGAAACACACAGCAATAGCGTTCAACTTTGAGGCGGGTGTCCACCAGTACATTGACGCAGACACAGATGATGAGGGACAGCTGCTCTACAGTGTGGACTCCAGCCCCCCCAAAAGCCTCCCTGGGAGCACCAGTCCGAAGTTCAGCACGGGGACAAGATCGGAGAAAAACCACTTTGAAAGCTCCCCTTTACCCACCTCCCCTAAGTTCTTAAGGCAGAACTGTATTTACTCCACAGAAGCATTGACTGGAAAAGGCCCCAGTGGTCAGGAAAAGTGCAAACTTGAGAACCACATCTCCCCTGACGTCCGTGTGTTGCCAGGGGGAGGAGCCCATGGAAGCACACGAGATCAGAGCATCTGA |
ORF Protein Sequence | MPAGMTKHGSRSTSSLPPEPMEIVRSKACSRRVRLNVGGLAHEVLWRTLDRLPRTRLGKLRDCNTHDSLLEVCDDYSLDDNEYFFDRHPGAFTSILNFYRTGRLHMMEEMCALSFSQELDYWGIDEIYLESCCQARYHQKKEQMNEELKREAETLREREGEEFDNTCCAEKRKKLWDLLEKPNSSVAAKILAIISIMFIVLSTIALSLNTLPELQSLDEFGQSTDNPQLAHVEAVCIAWFTMEYLLRFLSSPKKWKFFKGPLNAIDLLAILPYYVTIFLTESNKSVLQFQNVRRVVQIFRIMRILRILKLARHSTGLQSLGFTLRRSYNELGLLILFLAMGIMIFSSLVFFAEKDEDDTKFKSIPASFWWATITMTTVGYGDIYPKTLLGKIVGGLCCIAGVLVIALPIPIIVNNFSEFYKEQKRQEKAIKRREALERAKRNGSIVSMNMKDAFARSIEMMDIVVEKNGENMGKKDKVQDNHLSPNKWKWTKRTLSETSSSKSFETKEQGSPEKARSSSSPQHLNVQQLEDMYNKMAKTQSQPILNTKESAAQSKPKEELEMESIPSPVAPLPTRTEGVIDMRSMSSIDSFISCATDFPEATRFSHSPLTSLPSKTGGSTAPEVGWRGALGASGGRFVEANPSPDASQHSSFFIESPKSSMKTNNPLKLRALKVNFMEGDPSPLLPVLGMYHDPLRNRGSAAAAVAGLECATLLDKAVLSPESSIYTTASAKTPPRSPEKHTAIAFNFEAGVHQYIDADTDDEGQLLYSVDSSPPKSLPGSTSPKFSTGTRSEKNHFESSPLPTSPKFLRQNCIYSTEALTGKGPSGQEKCKLENHISPDVRVLPGGGAHGSTRDQSI |
Reference
Data / case study
Click to get more Data / Case study about the product.
Associated products
Category | Cat No. | Products Name |
---|---|---|
Target Antibody | GM-Tg-g-T44516-Ab | Anti-KCNB1/ DRK1/ Kv2.1 monoclonal antibody |
Target Antigen | GM-Tg-g-T44516-Ag | KCNB1 VLP (virus-like particle) |
ORF Viral Vector | pGMLP001673 | Human KCNB1 Lentivirus plasmid |
ORF Viral Vector | pGMPC000446 | Human KCNB1 Mammalian (Non-Viral Vector) plasmid |
ORF Viral Vector | vGMLP001673 | Human KCNB1 Lentivirus particle |
Target information
Target ID | GM-T44516 |
Target Name | KCNB1 |
Gene ID | 3745, 16500, 703520, 25736, 101101556, 485918, 539528, 100057009 |
Gene Symbol and Synonyms | DEE26,DRK1,DRK1PC,KCNB1,Kcr1-1,Kv2.1,Shab |
Uniprot Accession | Q14721 |
Uniprot Entry Name | KCNB1_HUMAN |
Protein Sub-location | Transmembrane Protein |
Category | Therapeutics Target |
Disease | Not Available |
Gene Ensembl | ENSG00000158445 |
Target Classification | Ion Channel |
Voltage-gated potassium (Kv) channels represent the most complex class of voltage-gated ion channels from both functional and structural standpoints. Their diverse functions include regulating neurotransmitter release, heart rate, insulin secretion, neuronal excitability, epithelial electrolyte transport, smooth muscle contraction, and cell volume. Four sequence-related potassium channel genes - shaker, shaw, shab, and shal - have been identified in Drosophila, and each has been shown to have human homolog(s). This gene encodes a member of the potassium channel, voltage-gated, shab-related subfamily. This member is a delayed rectifier potassium channel and its activity is modulated by some other family members. [provided by RefSeq, Jul 2008]
About GMVC
GMVC (GM Vector Core) is GeneMedi’s unique platform for QbD Viral vectors Processes development and manufacturing. In GMVC, our core expertise lies in the tailored production of viral vectors, including adeno-associated virus (AAV), lentivirus, and adenovirus. Our state-of-the-art facilities are equipped for scalable manufacturing, ensuring high-quality viral vector production to meet both research and therapeutic needs. Our expert team specializes in process development, leveraging innovative technology and extensive industry knowledge to provide clients with tailored solutions that exceed expectations. GMVC will be the ideal partner for scientists and healthcare professionals seeking reliable and efficient viral vector production services.