SKU | Test Kits | Buffer | Dye Color | Order Now |
---|---|---|---|---|
ATP5L-AHCYL2-20-RERE | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-REOR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-REGO | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-REGR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-REAQ | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-ORRE | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-OROR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-ORGO | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-ORGR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-ORAQ | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GORE | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GOOR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GOGO | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GOGR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GOAQ | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GRRE | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GROR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GRGO | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GRGR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-GRAQ | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-AQRE | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-AQOR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-AQGO | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-AQGR | 20 (40 μL) | 200 μL | Request Pricing | |
ATP5L-AHCYL2-20-AQAQ | 20 (40 μL) | 200 μL | Request Pricing |
Mitochondrial ATP synthase catalyzes ATP synthesis, utilizing an electrochemical gradient of protons across the inner membrane during oxidative phosphorylation. It is composed of two linked multi-subunit complexes: the soluble catalytic core, F1, and the membrane-spanning component, Fo, which comprises the proton channel. The F1 complex consists of 5 different subunits (alpha, beta, gamma, delta, and epsilon) assembled in a ratio of 3 alpha, 3 beta, and a single representative of the other 3. The Fo seems to have nine subunits (a, b, c, d, e, f, g, F6 and 8). This gene encodes the g subunit of the Fo complex. Alternative splicing results in multiple transcript variants.[provided by RefSeq, Jun 2010]
Gene Symbol : ATP5L
Gene Name : ATP synthase, H+ transporting, mitochondrial Fo complex subunit G
Chromosome : CHR 11: 118,401,388-118,409,846
Locus : 11q23.3
The protein encoded by this gene acts as a homotetramer and may be involved in the conversion of S-adenosyl-L-homocysteine to L-homocysteine and adenosine. Several transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Jun 2011]
Gene Symbol : AHCYL2
Gene Name : Adenosylhomocysteinase like 2
Chromosome : CHR 7: 129,225,013-129,430,210
Locus : 7q32.1
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