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Glucose 6-phosphatase-β is a ubiquitously expressed, 346-amino acid membrane protein that shares 36% sequence identity with glucose 6-phosphatase-α. Within the glucose 6-phosphatase-β enzyme, sequence alignments predict that its active site contains His167, His114, and Arg79.
Glucose-6-phosphatase, catalytic subunit (glucose 6-phosphatase alpha) is an enzyme that in humans is encoded by the G6PC gene. [ 5 ] [ 6 ] Glucose-6-phosphatase is an integral membrane protein of the endoplasmic reticulum that catalyzes the hydrolysis of D-glucose 6-phosphate to D-glucose and orthophosphate.
English: glucose-6-phosphatase system: in the end of the gluconeogenesis glc-6-p is transported into the ER (G6PT = T1) and dephosphorylated (G6Pase). Glucose is transported out of the cell passing two glucose-transporters (GLUT7 = T3 and GLUT2). Inorg. Phosphate is transported back to the cytosol by the T2 transporter
This gene encodes the catalytic subunit of glucose 6-phosphatase (G6Pase). G6Pase is located in the endoplasmic reticulum (ER) and catalyzes the hydrolysis of glucose 6-phosphate to glucose and phosphate in the last step of the gluconeogenic and glycogenolytic pathways. [5]
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14378 Ensembl ENSG00000278373 ENSG00000152254 ENSMUSG00000005232 UniProt Q9NQR9 Q9Z186 RefSeq (mRNA) NM_001081686 NM_021176 NM_001289856 NM_001289857 NM_021331 RefSeq (protein) NP_001075155 NP_066999 NP_001276785 NP_001276786 NP_067306 Location (UCSC) Chr 2: 168.9 – 168.91 Mb Chr 2: 69.04 – 69.06 Mb PubMed search Wikidata View/Edit Human View/Edit Mouse Glucose-6-phosphatase 2 is an enzyme ...
d -Glucose + 2 [NAD] + + 2 [ADP] + 2 [P] i 2 × Pyruvate 2 × + 2 [NADH] + 2 H + + 2 [ATP] + 2 H 2 O Glycolysis pathway overview The use of symbols in this equation makes it appear unbalanced with respect to oxygen atoms, hydrogen atoms, and charges. Atom balance is maintained by the two phosphate (P i) groups: Each exists in the form of a hydrogen phosphate anion, dissociating to contribute ...
The cleaved molecule is in the form of glucose 1-phosphate, which can be converted into G6P by phosphoglucomutase. Next, the phosphoryl group on G6P can be cleaved by glucose 6-phosphatase so that a free glucose can be formed. This free glucose can pass through membranes and can enter the bloodstream to travel to other places in the body.