Cacna1h (NM_021415) Mouse Tagged ORF Clone
SKU
MG226265
Cacna1h (tGFP-tagged) - Mouse calcium channel voltage-dependent T type alpha 1H subunit (Cacna1h) transcript variant 1, (10ug)
-
TrueORF®
TrueORF®
Expression-ready ORF plasmid with C-terminal tag(s)
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Product Data | |
Type | Mouse Tagged ORF Clone |
---|---|
Target Symbol | Cacna1h |
Synonyms | alpha13.2; Cav3; Cav3.2; MNCb-1209 |
Vector | pCMV6-AC-GFP |
E. coli Selection | Ampicillin (100 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
ORF Nucleotide Sequence
>MG226265 representing NM_021415
Red=Cloning site Blue=ORF Green=Tags(s) TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGACCGAGGGCACGCTGGCAGCGGACGAGGTCCGGGTGCCCCTGGGCGCTTCGCCTTCGGCTCCTGCAG CGCCGGTGAGGGCTTCCCCAGCGAGCCCTGGGGTGCCGGGGCGCGAGGAGCAGCGAGGATCCGGGTCGAG CGTGTTGGCTCCCGAGAGCCCAGGGACCGAGTGTGGTGCGGACCTGGGCGCCGACGAGGAACAGCCCGTC CCATACCCCGCTCTGGCTGCCACAGTCTTCTTCTGCCTCGGGCAAACCACGCGGCCCCGCAGCTGGTGCC TCCGACTGGTTTGTAACCCGTGGTTCGAGCACATTAGCATGCTGGTCATCATGCTGAACTGCGTGACACT GGGCATGTTCCGGCCCTGTGAGGATGTTGAGTGCCGTTCAGAACGTTGCAGCATCTTGGAGGCCTTTGAT GACTTCATCTTTGCCTTCTTTGCTGTGGAGATGGTTATCAAGATGGTGGCTTTGGGACTGTTCGGCCAGA AATGCTACCTGGGTGACACCTGGAACAGGCTGGACTTCTTCATTGTCATGGCCGGCATGATGGAATACTC TCTGGACGGACACAACGTGAGCCTCTCTGCCATCCGAACGGTGCGTGTGCTGCGGCCCCTCCGCGCCATC AACCGGGTCCCCAGCATGCGAATCCTGGTCACACTGCTGCTGGACACACTGCCCATGCTTGGGAACGTGC TTCTTCTCTGCTTCTTCGTCTTCTTCATCTTCGGCATCGTTGGGGTCCAGCTCTGGGCTGGCCTGCTGCG GAACCGATGCTTCCTGGACAGCGCCTTCGTCAGGAACAACAACCTGACCTTCTTGCGGCCATACTACCAG ACAGAGGAGGGCGAGGAGAACCCATTCATCTGCTCCTCACGCCGCGACAACGGCATGCAGAAATGCTCAC ACATCCCCAGCCGCCGTGAGCTTCGCGTGCAGTGCACGCTCGGCTGGGAGGCCTACGGGCAGCCACAGGC TGAGGATGGGGGTGCCGGCCGAAATGCCTGCATCAACTGGAACCAGTACTACAACGTGTGCCGCTCGGGG GAATTCAACCCTCACAATGGTGCCATCAACTTTGACAACATTGGCTATGCTTGGATCGCCATCTTCCAGG TCATCACACTGGAGGGCTGGGTGGACATCATGTACTACGTCATGGATGCCCACTCGTTCTACAACTTCAT CTACTTTATCCTCCTCATCATTGTGGGCTCCTTCTTCATGATCAACCTGTGCCTGGTGGTGATAGCCACA CAGTTCTCAGAGACAAAGCAGAGGGAAAACCAGCTGATGCGTGAACAGCGGGCCCGCTATCTGTCCAACG ACAGCACTCTGGCCAGCTTCTCGGAGCCTGGCAGCTGCTACGAGGAGCTCCTCAAGTATGTGGGCCACAT CTTCCGAAAGGTTAAACGCCGGAGCCTGCGCCTTTACGCCCGCTGGCAGAGCCGTTGGCGTAAGAAGGTA GATCCCAGCAGCACCCTGCATGGCCAAGGCCCCAGGCGGCGGCCACGGCGCGCAGGCAGGCGCACAGCTT CTGTGCACCATCTGGTCTACCACCACCACCACCACCATCACCACCATTACCACTTCAGCCACGGTGGCCC ACGCAGGCCTAGCCCAGAGCCAGGTGCTGGTGACACCAGGTTGGTCAGGGCCTGTGTGCCACCCTCGCCA CCATCCCCAGGCCACGGGCCACCAGACTCTGAGTCTGTGCACAGTATCTACCATGCTGACTGCCACGTGG AGGGGCCACAGGAAAGAGCCCGTGTGGCGCACACCATAGCCACTGCTGCCAGCCTCAAGCTGGCCTCAGG CTTGGGCACCATGAACTACCCCACCATCCTACCTTCAGGAGCAGTCAACAGCAAAGGCAGTACCAGCTCA CGACCCAAGGGGCTTCGGAGTGCTGGCACCCCAGGGGCCACAGCACACAGCCCTCTGAGCCTGGGGAGCC CCAGCCCCTATGAGAAGATCCAGCACGTGGTTGGAGAACAAGGACTAGGCCGAGCCTCTAGTCACCTGTC AGGCCTGAGTGTGCCTTGCCCCCTGCCCAGCCCCCAGGCTGGCACACTGACCTGTGAGCTGAAGAGCTGC CCATATTGTGCCAGCGCCCTGGAGGACCCCGAGTTTGAGTTCAGTGGCTCAGAGAGTGGGGACTCGGATG CCCATGGAGTCTATGAGTTTACACAGGACGTACGGCATGGGGATTGCCGAGATCCTGTGCAGCAGCCCCA TGAAGGGGGCACGCCGGGCCATGGCAACGAACGGTGGCGGCCACCACTGCGGACAGCCTCACAGCCAGGA GGGTTAGGCCGCCTCTGGGCTTCCTTTAGTAGCAAGCTGCGTCGCATTGTAGACAGCAAGTACTTCAACC GAGGCATCATGGCAGCCATCCTCGTCAATACTCTGAGCATGGGTGTTGAGTATCATGAGCAGCCTGATGA GCTGACTAACGCGCTGGAGATAAGCAACATCGTGTTCACCAGCATGTTTGCCTTGGAGATGCTACTGAAG TTGCTGGCCTGTGGCCCGCTGGGCTACATTCGGAACCCCTACAACATCTTCGATGGCATTGTTGTCGTCA TAAGCGTCTGGGAGATCGTGGGGCAGGCAGATGGTGGCTTGTCGGTGCTCCGTACGTTCCGGCTGCTGCG GGTGCTGAAGCTGGTGCGCTTCCTGCCAGCCCTGCGGCGGCAGCTGGTGGTGCTCATGAGGACCATGGAC AACGTGGCCACCTTCTGCATGCTGCTAATGCTCTTCATCTTCATCTTCAGCATCCTGGGCATGCACCTGT TTGGCTGTAAGTTCAGCCTGAAGACAGACTCCGGAGACACCGTCCCTGACAGGAAGAACTTCGACTCTCT ACTGTGGGCCATCGTCACTGTGTTTCAGATCTTGACACAGGAAGACTGGAACGTGGTTCTTTACAACGGC ATGGCTTCCACCTCGTCCTGGGCTGCCCTTTACTTTGTGGCCCTCATGACCTTTGGGAACTATGTGCTCT TCAACCTGCTGGTAGCCATCCTAGTGGAAGGCTTCCAGGCAGAGGGTGATGCCACCAGATCTGACACCGA TGAGGATAAGACATCTACCCACCTAGAGGAAGATTTCGATAAGCTCAGAGACGTTCGAGCCACAGAGATG AAGATGTACTCACTGGCTGTGACCCCTAATGGGCACCTAGAGGGCCGAGGCAGTCTGCCGCCGCCTCTCA TCACACACACAGCGGCTACGCCTATGCCTACCCCCAAGAGCTCCCCTCATCTGGACATGGCCCACACTCT TTTGGACTCACGGCGCAGCAGCAGCGGCTCTGTGGACCCCCAACTCGGGGACCAGAAGTCTCTGGCTAGC CTGCGCAGCTCCCCTTGTGCCCCATGGGGCCCCAACAGTGCAGGAAGCAGCCGGCGCTCCAGCTGGAACA GCCTGGGCCGCGCACCCAGCCTCAAACGCCGCAGCCAGTGTGGGGAGCGCGAGTCCCTGCTCTCTGGTGA GGGGAAGGGCAGCACGGATGACGAGGCCGAGGACAGCAGACCAAACTCAGGGACCCACCCAGGAGCTTCA CCCGGGCCCCGGGCCACACCCCTGCGGCGGGCGGAGTCGTTGGGCCACCGCAGCACAATGGACCTGTGTC CCCCACGGCCTGCCACCCTCCTGCCCACCAAGTTCCGTGACTGCAACGGGCAGATGGTGGCCCTGCCCAG CGAGTTCTTCCTGCGCATCGACAGCCACAAGGAGGACGCAGCAGAGTTTGATGATGACATAGAAGATAGC TGCTGCTTCCGCCTGCACAAAGTGCTGGAGCCCTATGCACCCCAGTGGTGCAGCAGCCGGGAGTCCTGGG CCCTGTATCTCTTCCCGCCGCAGAACAGGCTACGCGTCTCCTGCCAGAAAGTCATCGCACACAAGATGTT TGACCACGTGGTCCTTGTCTTCATCTTCCTCAACTGTATCACCATTGCCCTGGAGAGGCCAGACATCGAT CCGGGCAGCACTGAACGGGCCTTTCTCAGCGTCTCCAACTACATCTTCACAGCCATCTTTGTGGTGGAGA TGATGGTGAAGGTGGTAGCCCTGGGGCTGCTGTGGGGTGAGCATGCCTACCTGCAGAGCAGCTGGAATGT GCTGGACGGGCTGCTTGTCCTGGTGTCCCTGGTTGACATCATTGTGGCCGTGGCCTCTGCCGGTGGTGCC AAGATCCTAGGCGTCCTGCGCGTGCTGCGCCTGCTGCGGACCCTGAGGCCTCTGAGGGTCATCAGCCGAG CTCCAGGCCTCAAGCTGGTCGTGGAGACTCTGATATCATCGCTCAGGCCCATCGGGAATATCGTCCTCAT CTGCTGCGCCTTCTTCATTATCTTTGGCATCCTCGGGGTGCAGCTTTTCAAGGGCAAATTCTACTACTGC GAGGGTACAGATACCAGGAATATCACCACCAAGGCCGAGTGCCATGCCGCCCACTACCGCTGGGTGAGGC GCAAATACAACTTTGACAACCTGGGTCAGGCGCTGATGTCTCTGTTCGTGCTGTCATCCAAGGATGGCTG GGTAAACATCATGTACGACGGGCTGGACGCCGTGGGCATCGACCAGCAGCCTGTGCAGAACCACAACCCC TGGATGCTGCTCTACTTCATCTCCTTCCTGCTCATCGTCAGCTTCTTCGTGCTCAACATGTTTGTGGGCG TGGTGGTGGAGAACTTCCACAAGTGCCGGCAGCACCAGGAGGCGGAGGAAGCGCGGCGGCGCGAGGAGAA ACGGCTGCGGCGCCTGGAGAGGAGGCGCAGGAAGGCCCAGCGCCGGCCCTACTACGCAGACTATTCACAC ACGCGCCGCTCCATCCATTCGCTGTGCACCAGCCACTACCTGGACCTCTTCATCACCTTCATCATCTGCC TCAATGTCATCACCATGTCCATGGAGCACTACAACCAGCCCAAGTCTCTGGACGAGGCCCTTAAGTACTG CAACTACGTCTTTACCATCGTCTTCGTCTTTGAGGCCGCGCTGAAGCTGGTGGCCTTTGGATTCCGGAGG TTCTTCAAGGACAGGTGGAACCAGCTGGACTTGGCCATCGTCCTCCTGTCCATCATGGGCATTGCGCTGG AGGAGATTGAGATGAATGCTGCCCTCCCCATCAACCCCACCATCATCCGTATCATGCGCGTGCTTCGCAT CGCCCGTGTGCTGAAGCTACTGAAGATGGCCACAGGCATGCGCGCCCTGCTGGACACTGTGGTTCAAGCT CTGCCTCAGGTAGGGAACCTTGGTCTTCTTTTCATGCTCCTGTTTTTTATCTATGCTGCCCTGGGAGTGG AGCTGTTTGGGAGGCTAGAATGCAGCGAGGATAATCCCTGTGAGGGCCTGAGCAGACACGCCACCTTCAC CAACTTTGGCATGGCCTTCCTCACGTTGTTCCGAGTGTCCACTGGGGACAATTGGAATGGGATCATGAAG GATACTCTCCGTGAGTGTACCCGTGAAGACAAGCACTGCCTCAGCTACCTGCCCGCGCTCTCCCCCGTCT ACTTCGTCACCTTCGTGCTGGTCGCCCAGTTCGTGCTGGTCAACGTGGTGGTGGCCGTGCTCATGAAGCA CCTGGAGGAGAGCAACAAGGAGGCCCGGGAGGATGCGGAGATGGATGCCGAGATCGAGCTGGAGATCGCA CAGGGGTCCACAGCCCAGCCCCCGTCCACAGCACAGGAAAGCCAAGGTACCGATCCAGACACCCCGAACC TCCTGGTCGTGCGCAAAGTATCTGTGTCCAGGATGCTCTCGCTACCCAATGACAGCTACATGTTCCGGCC GGTGGCTCCTGCGGCTGCCCCGCATTCCCACCCACTGCAGGAAGTGGAGATGGAGACCTACACAGGCCCG GTCACCTCTGCTCACTCGCCATCCCTGGAGCCCCGCACCTCCTTCCAGGTCCCATCAGCTGCGTCCTCCC CAGCCAGGGCCAGCGACCCCCTTTGTGCCCTCTCACCCCGGGATACGCCCCGCTCTCTGAGCCTCTCACG GATACTCTACAGACAGGAGGCCATGCACGCAGAGTCCCTGGAAGGGCAGATAGATGACGCTGGAGAAGAC GGCATCCCAGACTACACGGAGCCTGCTGAAAATATCTCCATGAGCCAGGCACCTCTGGGTACCCTGCGGT CTCCTCCATGCTCCCCACGGCCTGCCAGTGTCCGTACCCGCAAGCACACTTTTGGGCAGCACTGCATCTC CAGCCGCCCTCCCACCCTGGGAGGAGATGATGCTGAAGCAGCAGACCCGGCCGATGAGGAGGTCAGCCAC ATCACCAGCTCAGCCCACCCTTGGCCAGCTACAGAGCCCCACAGCCCAGAGGCCTCCCCGACAGCCTCTC CTGCAAAAGGCACAGTGGGCAGTGGGCGGGACCCACACAGGTTCTGCAGTGTAGATGCTCAGAGCTTCCT GGACAAACCAGGTCGGCCAGATGCACAGCGGTGGTCCTCGGTGGAACTGGATAATGGGGATGGCCACCTA GAGTCTGGGGAAGTGAGGGCCCGGGCCTCAGAGCTAGAACCAGCTCTTGGGGCACGGAGGAAGAAGAAGA TGAGCCCTCCCTGCATCTCCATTGACCCTCCCACTGAAGATGAGGGCTCCTCCCGCCCCCCTGCAGCAGA AGGAGGCAACACTACTCTGAGGCGCCGAACCCCGTCCTGTGAGGCTGCCCTCCATAGGGACTGCCCAGAG TCTACAGAGGGCCCAGGCACTGGAGGGGACCCTGTAGCCAAGGGTGAGCGCTGGGGCCAGGCCTCTTGCC GGGCAGAGCATCTGACTGTCCCCAACTTTGCCTTTGAGCCTCTGGACATGGGCGGACCTGGTGGAGACTG TTTCTTGGACAGTGACCAAAGTGTGACCCCAGAACCCAGAGTTTCCTCTTTGGGGGCTATAGTGCCTCTA ATACTAGAAACTGAACTTTCTATGCCCTCTGGTGACCCCCCAGAGAAGGAGCAAGGACTGTACCTCACTG TGCCCCAGACCCCCTTGAAGAAACCAGGGTCTCCCCCAGCCACTCCTGCCCCAGATGACAGTGGAGATGA GCCTGTG AGCGGACCGACGCGTACGCGGCCGCTCGAG - GFP Tag - GTTTAA
Protein Sequence
>MG226265 representing NM_021415
Red=Cloning site Green=Tags(s) MTEGTLAADEVRVPLGASPSAPAAPVRASPASPGVPGREEQRGSGSSVLAPESPGTECGADLGADEEQPV PYPALAATVFFCLGQTTRPRSWCLRLVCNPWFEHISMLVIMLNCVTLGMFRPCEDVECRSERCSILEAFD DFIFAFFAVEMVIKMVALGLFGQKCYLGDTWNRLDFFIVMAGMMEYSLDGHNVSLSAIRTVRVLRPLRAI NRVPSMRILVTLLLDTLPMLGNVLLLCFFVFFIFGIVGVQLWAGLLRNRCFLDSAFVRNNNLTFLRPYYQ TEEGEENPFICSSRRDNGMQKCSHIPSRRELRVQCTLGWEAYGQPQAEDGGAGRNACINWNQYYNVCRSG EFNPHNGAINFDNIGYAWIAIFQVITLEGWVDIMYYVMDAHSFYNFIYFILLIIVGSFFMINLCLVVIAT QFSETKQRENQLMREQRARYLSNDSTLASFSEPGSCYEELLKYVGHIFRKVKRRSLRLYARWQSRWRKKV DPSSTLHGQGPRRRPRRAGRRTASVHHLVYHHHHHHHHHYHFSHGGPRRPSPEPGAGDTRLVRACVPPSP PSPGHGPPDSESVHSIYHADCHVEGPQERARVAHTIATAASLKLASGLGTMNYPTILPSGAVNSKGSTSS RPKGLRSAGTPGATAHSPLSLGSPSPYEKIQHVVGEQGLGRASSHLSGLSVPCPLPSPQAGTLTCELKSC PYCASALEDPEFEFSGSESGDSDAHGVYEFTQDVRHGDCRDPVQQPHEGGTPGHGNERWRPPLRTASQPG GLGRLWASFSSKLRRIVDSKYFNRGIMAAILVNTLSMGVEYHEQPDELTNALEISNIVFTSMFALEMLLK LLACGPLGYIRNPYNIFDGIVVVISVWEIVGQADGGLSVLRTFRLLRVLKLVRFLPALRRQLVVLMRTMD NVATFCMLLMLFIFIFSILGMHLFGCKFSLKTDSGDTVPDRKNFDSLLWAIVTVFQILTQEDWNVVLYNG MASTSSWAALYFVALMTFGNYVLFNLLVAILVEGFQAEGDATRSDTDEDKTSTHLEEDFDKLRDVRATEM KMYSLAVTPNGHLEGRGSLPPPLITHTAATPMPTPKSSPHLDMAHTLLDSRRSSSGSVDPQLGDQKSLAS LRSSPCAPWGPNSAGSSRRSSWNSLGRAPSLKRRSQCGERESLLSGEGKGSTDDEAEDSRPNSGTHPGAS PGPRATPLRRAESLGHRSTMDLCPPRPATLLPTKFRDCNGQMVALPSEFFLRIDSHKEDAAEFDDDIEDS CCFRLHKVLEPYAPQWCSSRESWALYLFPPQNRLRVSCQKVIAHKMFDHVVLVFIFLNCITIALERPDID PGSTERAFLSVSNYIFTAIFVVEMMVKVVALGLLWGEHAYLQSSWNVLDGLLVLVSLVDIIVAVASAGGA KILGVLRVLRLLRTLRPLRVISRAPGLKLVVETLISSLRPIGNIVLICCAFFIIFGILGVQLFKGKFYYC EGTDTRNITTKAECHAAHYRWVRRKYNFDNLGQALMSLFVLSSKDGWVNIMYDGLDAVGIDQQPVQNHNP WMLLYFISFLLIVSFFVLNMFVGVVVENFHKCRQHQEAEEARRREEKRLRRLERRRRKAQRRPYYADYSH TRRSIHSLCTSHYLDLFITFIICLNVITMSMEHYNQPKSLDEALKYCNYVFTIVFVFEAALKLVAFGFRR FFKDRWNQLDLAIVLLSIMGIALEEIEMNAALPINPTIIRIMRVLRIARVLKLLKMATGMRALLDTVVQA LPQVGNLGLLFMLLFFIYAALGVELFGRLECSEDNPCEGLSRHATFTNFGMAFLTLFRVSTGDNWNGIMK DTLRECTREDKHCLSYLPALSPVYFVTFVLVAQFVLVNVVVAVLMKHLEESNKEAREDAEMDAEIELEIA QGSTAQPPSTAQESQGTDPDTPNLLVVRKVSVSRMLSLPNDSYMFRPVAPAAAPHSHPLQEVEMETYTGP VTSAHSPSLEPRTSFQVPSAASSPARASDPLCALSPRDTPRSLSLSRILYRQEAMHAESLEGQIDDAGED GIPDYTEPAENISMSQAPLGTLRSPPCSPRPASVRTRKHTFGQHCISSRPPTLGGDDAEAADPADEEVSH ITSSAHPWPATEPHSPEASPTASPAKGTVGSGRDPHRFCSVDAQSFLDKPGRPDAQRWSSVELDNGDGHL ESGEVRARASELEPALGARRKKKMSPPCISIDPPTEDEGSSRPPAAEGGNTTLRRRTPSCEAALHRDCPE STEGPGTGGDPVAKGERWGQASCRAEHLTVPNFAFEPLDMGGPGGDCFLDSDQSVTPEPRVSSLGAIVPL ILETELSMPSGDPPEKEQGLYLTVPQTPLKKPGSPPATPAPDDSGDEPV SGPTRTRRLE - GFP Tag - V |
Restriction Sites |
SgfI-RsrII Cloning Scheme for this gene
Plasmid Map
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ACCN | NM_021415 |
ORF Size | 7077 bp |
OTI Disclaimer | The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info |
OTI Annotation | This clone was engineered to express the complete ORF with an expression tag. Expression varies depending on the nature of the gene. |
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 Method | 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. |
Shipping | Ambient |
Reference Data | |
RefSeq | NM_021415.4, NP_067390.4 |
RefSeq Size | 8240 bp |
RefSeq ORF | 7080 bp |
Locus ID | 58226 |
Cytogenetics | 17 12.53 cM |
Summary | Voltage-dependent Ca(2+) channels mediate the entry of Ca(2+) ions into excitable cells and are involved in a variety of Ca(2+)-dependent processes, including muscle contraction, hormone or neurotransmitter release, and gene expression. The protein encoded by this gene is an integral membrane protein that belongs to the calcium channel alpha-1 subunits family. Two transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Jul 2009] |
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Product Manuals |
FAQs |
SDS |
SKU | Description | Size | Price | |
---|---|---|---|---|
MC225288 | Cacna1h (untagged) - Mouse calcium channel, voltage-dependent, T type, alpha 1H subunit (Cacna1h), transcript variant 1, (10ug) | 10 ug |
$2,142.00
|
|
MR226265 | Cacna1h (Myc-DDK-tagged) - Mouse calcium channel, voltage-dependent, T type, alpha 1H subunit (Cacna1h), transcript variant 1 | 10 ug |
$1,947.00
|
|
Citations
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complexities in the preparation of your product. International customers may expect an additional 1-2 weeks
in shipping.