GD Stocks (GD)

GD
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Set Descending Direction
Name VDRC Id Library Sub-Category CG Number (r6.01) Genotype Comment Construct Id Publication Provider Scientist Provider Organization Gene Symbol CG Number (r6.01) Synonyms Left Primer Right Primer Hairpin Length Insertion Site Vector Template Sequence FlyBase Reference Reports RRID Comment Gene Name Keywords Price (net) Add to Cart
25960
25960
GD
10493
NADH dehydrogenase (ubiquinone) 1 alpha subcomplex, 8
NADH ubiquinone oxidoreductase 19 kDa
NADH:ubiquinone oxidoreductase 19 kDa subunit
NDUFA8
RH23043p
CGCGAATTCCCTGTATGGCGGAGGGCAAA
GCGTCTAGAGCTGGCGGCTTGGGGTAATC
325
cDNA
CCTGTATGGCGGAGGGCAAAGCCGTGACCAGCTGCGCCCTGGACTTCTTCCGCAAGGTGAAGAAGACCTGCCATGAGGAGTTCACGCAGTACGCCACCTGCCTGGATAAGAGCAGCGGTACTATGGCTTTTTCACATTGCCGCAAGACCCAGGGAGTGTTCGACAAGTGTATCAAAGATAACTTCGACTGGGATCGTCCCTCCTATGGATACTTCTCGAGGGCCAAGGTCATCCAATCAGCTCGGGAAGCACCCAAGAAGGAGGAGAAGGTCTCCTATCCCGATGCCACCCCCGGTTTGCCCGAGGATTACCCCAAGCCGCCAGC
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25963
25963
GD
10494
BcDNA:AT22273
CGCGAATTCCACCACCTTGCGGCTTCCTT
GCGTCTAGACCAGGCTCGGACAGTTGACCTT
344
cDNA
CACCACCTTGCGGCTTCCTTTCAACAGCTACCACATCAATTTGCCGCTATATATTTTGGACATGGTGCGCATCTTCCAGGATCATCCCAAGTACAGCAATGGTATCCACGAGGAGCACATTCTGGAGATGCTGGAAAAGGAACCCTTTGCCTGTGGCGATCTGGAGTCGCAGGTGAAGACCGCTCTGCTGGACCTAACGGCCAAGGGATTCATACGCTTCATTACCAATGGATACCGCACCCTGGGACCCATCGCCAAGCTATCCAATGCCCGTTCCGCGCGTCACTTCAACATGACATGGCAGCGCATTGCCGAGCTGCAGAAGGTCAACTGTCCGAGCCTGG
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25986
25986
GD
10564
ATP6V1G
BcDNA:AT14009
Vacuolar H[+] ATPase 13kD subunit
Vacuolar H[+] ATPase G-subunit
Vha13
VhaG
chr3R:15469897..15470039
l(3)05113
vha13
CGCGAATTCAGACGCAGGGAATCCAGCAGTT
CGCTCTAGAGTCGGGCGAGATGTTGTACACG
316
cDNA
AGACGCAGGGAATCCAGCAGTTGCTCGCTGCCGAGAAAAAGGCAGCCGAGAAGGTCGCCGAGGCTCGTAAACGCAAGGCAAGGAGGTTGAAGCAAGCCAAGGACGAGGCTACCGAGGAGATCGAGAAGTTCCGCCAGGAGCGCGAGCGCGCCTTCAAGGAGTTCGAGGCCAAGCACATGGGAAGTCGCGAGGGCGTGGCGGCCAAGATCGATGCGGATATCCGCGTTAAGCTGGCCGACATGGACCGGGCCATCCAGACCCGCAAGGACCCGTTCATCCTGGAGATCCTGCAGTACGTGTACAACATCTCGCCCGA
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25993
25993
GD
10566
CGCGAATTCGCCAGGATGACGAGGATGAGGA
GCGTCTAGATTGGTGCCTATTGTGTGTGTGGAAAG
391
cDNA
GCCAGGATGACGAGGATGAGGATCGGCACGACGCGCTAACTGGACACTATTTTCCAGTGGCCGACAAGGACCCCGATGACGTCTATCAACAGGAGAGCAAGTCGACACAAAGGGAGTCGGGATGCGACGGTTGTGGCAGGGATGATTGCCCGGATCCTCCGCAGGAGGACTGCGGTTGCAGTCCCGTAGCTAAGCCACAGCAGACACCCATTGCTGAATGTGCTCCTCAGCCGAAAGCGCCGCAGCCTGCACCTGCCGATGACTGCAGTTGCGCGGTGGGTAAGAGTCAGAGCAAAGCCGCTTCAGTCGTACCACCGCCCACCTTTATATGCCCACATTGTGGAGGCGTAACATCCGAAGCGTTCCTTTCCACACACACAATAGGCACCAA
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26110
26110
GD
10784
cg3294
CGCAGATCTAGCAGGAGGAAGTGGAGCGTTTG
GCGTCTAGAGCAGCATGGAATGGTTGAAGAAGTG
348
genomic
AGCAGGAGGAAGTGGAGCGTTTGCAGCGGGAACAGGCGAAAGAGCGGGCGGAACGGGAGGAGAGACAGCGGAAGCAGCGCGAGGAAGAGACACGAAAAGCCGCCAAGGCTGCCGCCGAATTCGATGCCATGATGGAGAGCATGGATGAGTATCTGAACAACCCGCGTATCGAGAAGCCACCCAGCCACCTTCTGCGTGTAATGGAGACGCATCCGGAGGAACGAGCCTGCGAGTTCTTTAGCCGCACCAACTGTTGCCGCTACGGTCACGCCTGCACCTTCAACCATCGCCGCCCGATGCTGGGAAGGATCCTTCTCATCCGGCACTTCTTCAACCATTCCATGCTGC
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26111
26111
GD
10784
cg3294
CGCAGATCTAGCAGGAGGAAGTGGAGCGTTTG
GCGTCTAGAGCAGCATGGAATGGTTGAAGAAGTG
348
genomic
AGCAGGAGGAAGTGGAGCGTTTGCAGCGGGAACAGGCGAAAGAGCGGGCGGAACGGGAGGAGAGACAGCGGAAGCAGCGCGAGGAAGAGACACGAAAAGCCGCCAAGGCTGCCGCCGAATTCGATGCCATGATGGAGAGCATGGATGAGTATCTGAACAACCCGCGTATCGAGAAGCCACCCAGCCACCTTCTGCGTGTAATGGAGACGCATCCGGAGGAACGAGCCTGCGAGTTCTTTAGCCGCACCAACTGTTGCCGCTACGGTCACGCCTGCACCTTCAACCATCGCCGCCCGATGCTGGGAAGGATCCTTCTCATCCGGCACTTCTTCAACCATTCCATGCTGC
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26187
26187
GD
10962
20S proteasome
20s proteasome
28.1Pros
3422
Alpha-4
PROS-28.1
PROS-Dm28.1
PROSA-28.1
PSA4_DROME
Pros-Dm28.1
Pros28
Pros28.1
Prosalpha4
Proteasome 28kD subunit 1
Proteasome alpha4 subunit
a4
alpha-subunit of
CGCGAATTCCCGCCGTCCCTTCGGTATTT
GCGTCTAGAGCTCCTCCTCCTTCTCCTTCTCG
350
genomic
CCGCCGTCCCTTCGGTATTTCCTGCCTTATTGGCGGCTTCGATGCCGATGGCTCTGCGCATCTGTTCCAGACTGAGCCGTCGGGCATTTTCTACGAGTATAAGGCTAACGCCACCGGGCGATCGGCAAAGGTTGTGCGCGAGTTCTTCGAGAAGTCCTACCGCGAGGAGGAGGTGGCCAACGAGCACGGAGCCGTCAAACTGGCCATCCGTGCGCTGCTCGAGGTGGCGCAGTCAGGCCAGAACAATCTGGAGGTGGCCATCATGGAGAACGGCAAGCCACTGAAAATGCTGGACACCGATGTCATTACCGATTATGTTAAGATCATCGAGAAGGAGAAGGAGGAGGAGC
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26231
26231
GD
11007
CGCGAATTCGCAGTGGCGCAGCATGAAGAA
GCGTCTAGAGCTTGGCCTTGGTCCGCTTG
377
genomic
GCAGTGGCGCAGCATGAAGAACTCCGCCAAGCGGGAGCACCAGCAGAAGCATCCGAAAACGGAGGCCCTGGAAGGCATGCGGATGATCGAGTTCCTGGAGGAGATGCAGAAGGATCCGGTCACCTCGCGCAGTCAGACACGCAGCGCGAACACAAACGGCGCTCTTAAGAAGGAGCTCATGGACATCGACGAGGACGAAGACATGCCGCTGGCCGCTCTGCCCAACTCTACGAACGCCAGCGAGGACACGCTGCAGACCTCCACAATAGCCATCCCCTCGCCGCCGCCCTCCACTGCTGGCGGAGACGGGGACTCCCAGCAGGAGGGAAATCCCGCCCAGCTGCCAGCCCAGCGACGCAAGCGGACCAAGGCCAAGC
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26232
26232
GD
11007
CGCGAATTCGCAGTGGCGCAGCATGAAGAA
GCGTCTAGAGCTTGGCCTTGGTCCGCTTG
377
genomic
GCAGTGGCGCAGCATGAAGAACTCCGCCAAGCGGGAGCACCAGCAGAAGCATCCGAAAACGGAGGCCCTGGAAGGCATGCGGATGATCGAGTTCCTGGAGGAGATGCAGAAGGATCCGGTCACCTCGCGCAGTCAGACACGCAGCGCGAACACAAACGGCGCTCTTAAGAAGGAGCTCATGGACATCGACGAGGACGAAGACATGCCGCTGGCCGCTCTGCCCAACTCTACGAACGCCAGCGAGGACACGCTGCAGACCTCCACAATAGCCATCCCCTCGCCGCCGCCCTCCACTGCTGGCGGAGACGGGGACTCCCAGCAGGAGGGAAATCCCGCCCAGCTGCCAGCCCAGCGACGCAAGCGGACCAAGGCCAAGC
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26274
26274
GD
11052
AAF51037
CGCGAATTCCTGAGCCAGGACGTGGAGAAGGT
GCGTCTAGAGCGTGCGCTTGTGATCGTTG
316
genomic
CTGAGCCAGGACGTGGAGAAGGTGACGATGCCGGGCAACAAGAATGCCTATCGGCTGTATAGCGCCGATGGTCACGCGCTCATCGATCTGCTGCAGAAGGTATCGGAGCCGCCGCCAGCGGTGGGACAGAAGGTACTGTGCCGGCATCCGTTCCAGGAGTCGAAGCGTGCCTACGTGATACCCTCGCACGTGGAGTCGCTCTACAAGGTGTATTGGAAGTCGGGCAAGATTTGCCAGCAGCTGCCCACGTTGGAGCAGGTACGCGAGAAGGTGCAAATCTCGCTGAAAACGTTGCGCAACGATCACAAGCGCACGC
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26275
26275
GD
11052
AAF51037
CGCGAATTCCTGAGCCAGGACGTGGAGAAGGT
GCGTCTAGAGCGTGCGCTTGTGATCGTTG
316
genomic
CTGAGCCAGGACGTGGAGAAGGTGACGATGCCGGGCAACAAGAATGCCTATCGGCTGTATAGCGCCGATGGTCACGCGCTCATCGATCTGCTGCAGAAGGTATCGGAGCCGCCGCCAGCGGTGGGACAGAAGGTACTGTGCCGGCATCCGTTCCAGGAGTCGAAGCGTGCCTACGTGATACCCTCGCACGTGGAGTCGCTCTACAAGGTGTATTGGAAGTCGGGCAAGATTTGCCAGCAGCTGCCCACGTTGGAGCAGGTACGCGAGAAGGTGCAAATCTCGCTGAAAACGTTGCGCAACGATCACAAGCGCACGC
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26309
26309
GD
11114
RRP4
Rrp4
dRrp4
rrp4
CGCGAATTCCAAGGTGTTCCCCGCTCTCGT
GCGTCTAGACTGCTGGCCGATGTCGTAGATG
340
genomic
CAAGGTGTTCCCCGCTCTCGTCAAGCGCCGCAAGATGCACTTCCACAACCTGCCCTGCGGCGCCTCCGTGATCCTGGGCAACAATGGCTACATCTGGATATCGCCGACCAAGGGCCAGGAGGAGGAAGGCGGCGAGGGAGGATTCGCTCAGAACCTGAACGAGCATGTGCCGCGCGCGGATCGGGAGGTGATCGCCCGGCTGAGGAACTCCATCCTCGCGCTGGCCAAGTGCAAGCTGATGATTTACGACACCAGCATCCAGTACGCCTACGAGGAGTCCCTGCGCTACGAGGCCCACGAGCTGCTCCAGCAGAACGCCATCTACGACATCGGCCAGCAG
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