ECHS1 (NM_004092) Human 3' UTR Clone
CAT#: SC205458
3' UTR clone of enoyl Coenzyme A hydratase short chain1 mitochondrial (ECHS1) nuclear gene encoding mitochondrial protein for miRNA target validation
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CNY 4,845.00
货期*
3周
规格
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经常一起买 (2)
Specifications
Product Data | |
Product Name | ECHS1 (NM_004092) Human 3' UTR Clone |
Vector | pMirTarget |
Synonyms | ECHS1D; SCEH |
ACCN | NM_004092 |
Insert Size | 413 bp |
Sequence Data |
>SC205458 3’UTR clone of NM_004092
The sequence shown below is from the reference sequence of NM_004092. The complete sequence of this clone may contain minor differences, such as SNPs. Blue=Stop Codon Red=Cloning site GGCAAGTTGGACGCCCGCAAGATCCGCGAGATTCTCATTAAGGCCAAGAAGGGCGGAAAGATCGCCGTG TAACAATTGGCAGAGCTCAGAATTCAAGCGATCGCC AAGAGAAAGGCCAACTTCAAAGACCAGTGAGAACCAGCTGCCCCTGCTTCACACCTCTGCTTGGAGAGG ACAAGTGCAGCCTGTCAGTTTTAGAAGCAAGTAAATCATCCTCTTTTCAAGAGCAGTGTCCGTGGTGTG CAGTTCCTCTCCAATTGCTGCGTGGTCGTGGCCCGACCTCTCACGGCATGACAGCCTTCGTCACCCAGC CTGTGAGGGTCCTGACTGGAGCACCTTCTAAATCTAAGATTCTGCTGAGGAGCCCCCGCTGGTCCCTCT GGGCATGCTGTGCTCGGACGGAAAGCGGGGCCTGCGGGTCCTTGTGTCCCTGCCGCTGAAGAATGGGGC TGCTCTGAGGGAAACGCTGTCTGCTGCCTTCATACAGATGCTGATTAAAGTGATAGCGATTCAGATTA ACGCGTAAGCGGCCGCGGCATCTAGATTCGAAGAAAATGACCGACCAAGCGACGCCCAACCTGCCATCA CGAGATTTCGATTCCACCGCCGCCTTCTATGAAAGG |
Restriction Sites | SgfI-MluI |
OTI Disclaimer | Our molecular clone sequence data has been matched to the sequence identifier above as a point of reference. Note that the complete sequence of this clone is largely the same as the reference sequence but may contain minor differences , e.g., single nucleotide polymorphisms (SNPs). |
Reference Data | |
RefSeq | NM_004092.4 |
Synonyms | ECHS1D; SCEH |
Summary | The protein encoded by this gene functions in the second step of the mitochondrial fatty acid beta-oxidation pathway. It catalyzes the hydration of 2-trans-enoyl-coenzyme A (CoA) intermediates to L-3-hydroxyacyl-CoAs. The gene product is a member of the hydratase/isomerase superfamily. It localizes to the mitochondrial matrix. Transcript variants utilizing alternative transcription initiation sites have been described in the literature. [provided by RefSeq, Jul 2008] |
Locus ID | 1892 |
MW | 14.4 |
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