KIAA1543 (CAMSAP3) (NM_020902) Human Untagged Clone

CAT#: SC316033

CAMSAP3 (untagged)-Human KIAA1543 (KIAA1543), transcript variant 2



  "NM_020902" in other vectors (4)

CNY 24,040.00


货期*
8周

规格
    • 10 ug

Product images

经常一起买 (4)
TurboFectin Transfection Reagent (1 mL in 1 vial)
    • 1 ml in 1 vial

CNY 4,090.00


DH5α Chemically Competent Cells (≥10^8 cfu/μg of pUC19 DNA)
    • 5 x 200 ul

CNY 1,280.00


Forward sequencing primer VP1.5, Reverse sequencing primer XL39, 100pmoles each
    • 100 pmol

CNY 480.00


CAMSAP3 rabbit polyclonal antibody
    • 25 ul

CNY 800.00
CNY 1,280.00

Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Synonyms KIAA1543; NEZHA; PPP1R80
Vector pCMV6 series
Sequence Data
>NCBI ORF sequence for NM_020902, the custom clone sequence may differ by one or more nucleotides
ATGGTGGAGGCGGCGCCCCCCGGGCCCGGGCCGCTGCGGAGGACCTTTCTAGTGCCCGAG
ATCAAGTCGCTGGACCAGTACGATTTCTCGCGGGCCAAGGCGGCGGCCAGCCTGGCGTGG
GTGCTGCGGGCCGCGTTCGGGGGCGCAGAGCACGTGCCCCCGGAGCTGTGGGAGCCCTTC
TATACCGACCAGTACGCGCAGGAGCATGTGAAGCCCCCGGTGACACGGCTGCTGCTCTCA
GCCGAGCTCTACTGCAGAGCCTGGCGCCAGGCACTGCCACAGCTTGAAACACCCCCCAAC
CCCTCTGCACTGCTGGCCCTGCTGGCGCGGAGGGGCACAGTGCCTGCTTTGCCCGAGCGC
CCGGTGCGCGAGGCCGACCTGAGGCACCAGCCCATTCTCATGGGAGCCCACCTAGCTGTC
ATTGATGCCCTCATGGCTGCCTTTGCCTTCGAGTGGACAAAGACCCTGCCAGGTCCCTTG
GCCCTGACCAGCTTGGAGCACAAGCTGCTTTTCTGGGTGGACACGACCGTCCGGCGGCTG
CAGGAGAAGACCGAGCAGGAAGCGGCCCAGCGAGCCTCTCCAGCAGCCCCTGCAGACGGG
GCGGCCCCGGCGCAGCCCTCGATCCGATACCGCAAGGACCGTGTGGTGGCGCGACGTGCC
CCCTGCTTCCCGACGGTGACCAGCCTCCAGGACCTGGCCAGTGGGGCCGCGCTGGCCGCC
ACCATCCACTGCTATTGTCCCCAGCTGCTTCGACTTGAGGAGGTGTGCTTGAAGGACCCC
ATGTCTGTGGCGGACAGCCTGTACAACCTCCAGCTCGTGCAGGATTTCTGTGCCTCTCGC
CTTCCTCGTGGCTGCCCCCTGTCCCTTGAGGACTTGCTGTACGTCCCACCGCCACTCAAG
GTCAACTTGGTGGTGATGCTGGCCGAGTTGTTCATGTGTTTTGAGGTGCTCAAGCCCGAC
TTTGTGCAAGTGAAGGACTTGCCCGATGGTCACGCTGCCTCCCCCCGGGGCACTGAGGCC
TCCCCACCTCAGAACAACAGCGGCAGTAGTTCTCCTGTCTTCACCTTCCGCCACCCGCTT
CTGTCATCTGGTGGCCCCCAGTCCCCACTCCGAGGATCCACAGGCTCCCTGAAGTCTTCC
CCGTCCATGTCCCATATGGAGGCCCTGGGCAAGGCCTGGAACCGGCAGCTCAGCCGTCCC
CTCTCCCAGGCTGTGTCATTCAGCACCCCCTTTGGCCTGGACAGCGACGTGGATGTCGTC
ATGGGAGACCCTGTGCTCCTCCGCTCTGTGAGCTCGGACAGCCTGGGCCCCCCGCGTCCC
GCGCCGGCCAGGACCCCCACCCAGCCACCCCCGGAGCCTGGTGACCTGCCCACCATCGAG
GAAGCTCTGCAGATCATCCACAGTGCCGAGCCCCGGCTCCTCCCAGATGGGGCGGCCGAC
GGCAGCTTCTACCTCCACTCCCCTGAGGGGCCCTCCAAGCCATCCCTGGCCTCCCCCTAC
CTGCCCGAGGGGACCTCCAAACCACTGTCCGACAGGCCCACCAAAGCACCAGTGTACATG
CCACACCCCGAGACCCCCTCGAAACCATCTCCCTGTCTGGTGGGGGAGGCATCGAAACCG
CCAGCCCCATCCGAGGGGTCCCCGAAGGCGGTGGCTTCGTCCCCAGCAGCCACCAACTCC
GAGGTGAAAATGACCAGCTTTGCAGAACGCAAGAAACAGCTGGTGAAGGCAGAGGCTGAG
GCCGGAGCGGGGTCCCCCACGTCCACTCCGGCCCCGCCGGAGGCCCTGAGCTCGGAGATG
AGTGAGCTCAGCGCCCGGCTGGAGGAGAAACGCAGAGCCATCGAGGCTCAGAAGCGACGG
ATTGAGGCCATATTCGCCAAGCACCGCCAGCGGCTGGGCAAAAGCGCCTTCCTGCAGGTG
CAGCCGCGGGAAGCCTCTGGGGAGGCGGAAGCAGAGGCGGAGGAGGCCGATTCCGGTCCA
GTCCCTGGTGGGGAGCGGCCCGCAGGCGAGGGCCAGGGTGAGCCAACCTCACGGCCCAAG
GCAGTGACCTTCTCGCCAGACCTGGGCCCGGTGCCCCACGAGGGGCTGGGGGAATACAAT
CGAGCGGTCAGCAAGCTGAGTGCCGCCTTGAGCTCGCTGCAGCGGGACATGCAGAGGCTC
ACGGACCAGCAGCAGCGGCTCCTGGCCCCGCCCGAGGCCCCCGGATCCGCCCCACCACCT
GCTGCGTGGGTCATCCCTGGCCCCACGACGGGGCCCAAAGCTGCATCCCCCAGCCCCGCC
CGGCGAGTCCCGGCCACCCGGCGCAGCCCTGGGCCCGGGCCCAGCCAGTCACCCCGCAGC
CCGAAACACACGCGGCCAGCGGAGCTGCGGCTGGCACCCTTGACCAGGGTGCTTACGCCA
CCCCACGACGTAGACAGCCTCCCCCACCTGCGCAAGTTCTCGCCGAGCCAGGTGCCCGTG
CAGACGCGCTCTTCCATCCTCCTGGCGGAGGAGACGCCCCCCGAGGAGCCAGCCGCCCGG
CCGGGCCTCATCGAGATCCCGCTGGGCAGCCTGGCAGATCCCGCCGCCGAGGACGAGGGA
GACGGGAGCCCCGCTGGTGCTGAGGATTCCTTGGAGGAGGAGGCGTCTTCGGAGGGGGAG
CCCCGGGTGGGGCTGGGGTTCTTCTACAAGGATGAAGACAAGCCTGAGGACGAGATGGCC
CAAAAGCGGGCCAGCCTGCTGGAGCGGCAGCAGCGGCGAGCAGAGGAGGCGCGGCGGCGC
AAGCAGTGGCAGGAGGTGGAGAAGGAACAGCGGAGGGAGGAGGCCGCGAGGCTGGCCCAA
GAGGAGGCCCCGGGCCCAGCCCCGCTTGTGTCCGCAGTCCCGATGGCGACTCCAGCCCCT
GCTGCCCGGGCTCCAGCCGAGGAGGAGGTGGGCCCCCGGAAGGGGGACTTCACGCGGCAG
GAGTACGAGCGCCGGGCCCAGCTGAAGCTGATGGACGACCTCGATAAGGTGCTGCGGCCC
CGGGCTGCGGGGTCCGGGGGTCCAGGTCGGGGCGGGCGGAGGGCCACCCGGCCTCGCTCG
GGTTGCTGTGACGACTCAGCCCTGGCACGAAGCCCAGCCCGCGGCCTGCTGGGCTCTCGG
CTGAGCAAAATCTATTCCCAGTCCACCCTGTCACTGTCCACTGTGGCCAACGAGGCCCAC
AATAACCTCGGGGTGAAGAGGCCCACGTCTCGGGCTCCCTCCCCGTCAGGTCTCATGTCC
CCAAGCCGCCTGCCTGGAAGCCGCGAACGGGACTGGGAAAATGGCAGCAATGCCTCCTCC
CCAGCGTCAGTGCCCGAGTACACAGGTCCACGGCTGTACAAAGAACCCAGCGCCAAGTCC
AACAAGTTCATCATCCACAATGCCCTATCACACTGCTGCCTGGCGGGCAAGGTGAACGAA
CCGCAGAAGAATCGCATTCTGGAGGAAATTGAGAAAAGCAAGGCCAACCACTTCCTGATC
CTCTTTCGCGACTCGAGCTGCCAGTTCCGGGCGCTCTACACGCTGTCGGGGGAGACAGAG
GAGCTGTCGCGGCTGGCAGGGTATGGGCCCCGGACCGTCACGCCCGCCATGGTGGAAGGC
ATCTACAAGTACAACTCGGACCGCAAGCGCTTCACCCAGATCCCCGCCAAGACCATGTCC
ATGAGCGTCGATGCCTTCACCATCCAGGGACACCTCTGGCAGGGCAAGAAACCCACCACT
CCCAAGAAGGGCGGCGGCACCCCCAAA
Restriction Sites Please inquire     
ACCN NM_020902
OTI Disclaimer Our molecular clone sequence data has been matched to the reference identifier above as a point of reference. Note that the complete sequence of our molecular clones may differ from the sequence published for this corresponding reference, e.g., by representing an alternative RNA splicing form or single nucleotide polymorphism (SNP).
OTI Annotation This TrueClone is provided through our Custom Cloning Process that includes sub-cloning into OriGene's pCMV6 vector and full sequencing to provide a non-variant match to the expected reference without frameshifts, and is delivered as lyophilized plasmid DNA.
Product Components The ORF clone is ion-exchange column purified and shipped in a 2D barcoded Matrix tube containing 10ug of transfection-ready, dried plasmid DNA (reconstitute with 100 ul of water).
Reconstitution 1. Centrifuge at 5,000xg for 5min.
2. Carefully open the tube and add 100ul of sterile water to dissolve the DNA.
3. Close the tube and incubate for 10 minutes at room temperature.
4. Briefly vortex the tube and then do a quick spin (less than 5000xg) to concentrate the liquid at the bottom.
5. Store the suspended plasmid at -20°C. The DNA is stable for at least one year from date of shipping when stored at -20°C.
Note Plasmids are not sterile.  For experiments where strict sterility is required, filtration with 0.22um filter is required.
Reference Data
RefSeq NM_020902.1, NP_065953.1
RefSeq Size 4120 bp
RefSeq ORF 3750 bp
Locus ID 57662
UniProt ID Q9P1Y5
Gene Summary Key microtubule-organizing protein that specifically binds the minus-end of non-centrosomal microtubules and regulates their dynamics and organization (PubMed:19041755, PubMed:23169647). Specifically recognizes growing microtubule minus-ends and autonomously decorates and stabilizes microtubule lattice formed by microtubule minus-end polymerization (PubMed:24486153). Acts on free microtubule minus-ends that are not capped by microtubule-nucleating proteins or other factors and protects microtubule minus-ends from depolymerization (PubMed:24486153). In addition, it also reduces the velocity of microtubule polymerization (PubMed:24486153). Required for the biogenesis and the maintenance of zonula adherens by anchoring the minus-end of microtubules to zonula adherens and by recruiting the kinesin KIFC3 to those junctional sites (PubMed:19041755). Required for orienting the apical-to-basal polarity of microtubules in epithelial cells: acts by tethering non-centrosomal microtubules to the apical cortex, leading to their longitudinal orientation (PubMed:27802168, PubMed:26715742). Plays a key role in early embryos, which lack centrosomes: accumulates at the microtubule bridges that connect pairs of cells and enables the formation of a non-centrosomal microtubule-organizing center that directs intracellular transport in the early embryo (By similarity). Couples non-centrosomal microtubules with actin: interaction with MACF1 at the minus ends of non-centrosomal microtubules, tethers the microtubules to actin filaments, regulating focal adhesion size and cell migration (PubMed:27693509). Plays a key role in the generation of non-centrosomal microtubules by accumulating in the pericentrosomal region and cooperating with KATNA1 to release non-centrosomal microtubules from the centrosome (PubMed:28386021). Through the microtubule cytoskeleton, also regulates the organization of cellular organelles including the Golgi and the early endosomes (PubMed:28089391). Through interaction with AKAP9, involved in translocation of Golgi vesicles in epithelial cells, where microtubules are mainly non-centrosomal (PubMed:28089391).[UniProtKB/Swiss-Prot Function]
Transcript Variant: This variant (2) lacks two exons in the 5' coding region, compared to variant 1. The encoded isoform (2) is shorter, compared to isoform 1.
*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

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