PMID-sentid Pub_year Sent_text comp_official_name comp_offsetprotein_name organism prot_offset 17395143-0 2007 An enzymatic cycling assay for nicotinic acid adenine dinucleotide phosphate using NAD synthetase. NAADP 31-76 NAD synthetase 1 Homo sapiens 83-97 17395143-3 2007 In this system, NAADP is first converted into nicotinic acid adenine dinucleotide (NAAD) by alkaline phosphatase, after which the NAAD is converted to NAD, AMP, and PPi by NAD synthetase (NADS) in the presence of ATP and ammonia. NAADP 16-21 NAD synthetase 1 Homo sapiens 172-186 17395143-3 2007 In this system, NAADP is first converted into nicotinic acid adenine dinucleotide (NAAD) by alkaline phosphatase, after which the NAAD is converted to NAD, AMP, and PPi by NAD synthetase (NADS) in the presence of ATP and ammonia. nicotinic acid adenine dinucleotide 46-81 NAD synthetase 1 Homo sapiens 172-186 17395143-3 2007 In this system, NAADP is first converted into nicotinic acid adenine dinucleotide (NAAD) by alkaline phosphatase, after which the NAAD is converted to NAD, AMP, and PPi by NAD synthetase (NADS) in the presence of ATP and ammonia. nicotinic acid adenine dinucleotide 16-20 NAD synthetase 1 Homo sapiens 172-186 17395143-3 2007 In this system, NAADP is first converted into nicotinic acid adenine dinucleotide (NAAD) by alkaline phosphatase, after which the NAAD is converted to NAD, AMP, and PPi by NAD synthetase (NADS) in the presence of ATP and ammonia. nicotinic acid adenine dinucleotide 83-87 NAD synthetase 1 Homo sapiens 172-186 17395143-3 2007 In this system, NAADP is first converted into nicotinic acid adenine dinucleotide (NAAD) by alkaline phosphatase, after which the NAAD is converted to NAD, AMP, and PPi by NAD synthetase (NADS) in the presence of ATP and ammonia. NAD 151-154 NAD synthetase 1 Homo sapiens 172-186 17395143-3 2007 In this system, NAADP is first converted into nicotinic acid adenine dinucleotide (NAAD) by alkaline phosphatase, after which the NAAD is converted to NAD, AMP, and PPi by NAD synthetase (NADS) in the presence of ATP and ammonia. Adenosine Monophosphate 156-159 NAD synthetase 1 Homo sapiens 172-186 17395143-3 2007 In this system, NAADP is first converted into nicotinic acid adenine dinucleotide (NAAD) by alkaline phosphatase, after which the NAAD is converted to NAD, AMP, and PPi by NAD synthetase (NADS) in the presence of ATP and ammonia. Adenosine Triphosphate 213-216 NAD synthetase 1 Homo sapiens 172-186 17395143-3 2007 In this system, NAADP is first converted into nicotinic acid adenine dinucleotide (NAAD) by alkaline phosphatase, after which the NAAD is converted to NAD, AMP, and PPi by NAD synthetase (NADS) in the presence of ATP and ammonia. Ammonia 221-228 NAD synthetase 1 Homo sapiens 172-186 17395143-4 2007 The NAD is then amplified using an enzyme cycling system driven by glucose dehydrogenase and diaphorase. NAD 4-7 hexose-6-phosphate dehydrogenase/glucose 1-dehydrogenase Homo sapiens 67-88 17395143-4 2007 The NAD is then amplified using an enzyme cycling system driven by glucose dehydrogenase and diaphorase. NAD 4-7 dihydrolipoamide dehydrogenase Homo sapiens 93-103 17395143-9 2007 Interference by NAD analogs (e.g., NAAD, NADP) in the sample was eliminated prior to running the assay by treating the sample with NADS and NAD nucleosidase (NADase). NAD 16-19 bone marrow stromal cell antigen 1 Homo sapiens 140-156 17395143-9 2007 Interference by NAD analogs (e.g., NAAD, NADP) in the sample was eliminated prior to running the assay by treating the sample with NADS and NAD nucleosidase (NADase). nicotinic acid adenine dinucleotide 35-39 bone marrow stromal cell antigen 1 Homo sapiens 140-156 17395143-9 2007 Interference by NAD analogs (e.g., NAAD, NADP) in the sample was eliminated prior to running the assay by treating the sample with NADS and NAD nucleosidase (NADase). NADP 41-45 bone marrow stromal cell antigen 1 Homo sapiens 140-156