| human | 遺伝子名 | SES1 |
| 同義語(エイリアス) | secernin 1; Secernin-1; SCRN1; KIAA0193 | |
| SWISS-PROTのID | SWISS-PROT:Q12765 | |
| EntrezGeneのID | EntrezGene:9805 | |
| その他のDBのID | HGNC:22192 |
| human | 遺伝子名 | SES1 |
| 同義語(エイリアス) | HMSE1; PCE-1; Triacylglycerol hydrolase; CES2; TGH; Egasyn; Serine esterase 1; Liver carboxylesterase 1 precursor; CES1; HMSE; Brain carboxylesterase hBr1; MGC117365; CEH; Acyl coenzyme A:cholesterol acyltransferase; Monocyte/macrophage serine esterase | |
| SWISS-PROTのID | SWISS-PROT:P23141 | |
| EntrezGeneのID | EntrezGene:1066 | |
| その他のDBのID | HGNC:1863 |
| mouse | 遺伝子名 | SES1 |
| 同義語(エイリアス) | 6330535A03Rik; 2810019K23Rik; Scrn1; AI852905; Kiaa0193; secernin 1; Secernin-1; mKIAA0193; KIAA0193 | |
| SWISS-PROTのID | SWISS-PROT:Q9CZC8 | |
| EntrezGeneのID | EntrezGene:69938 | |
| その他のDBのID | MGI:1917188 |
| mouse | 遺伝子名 | Ses-1 |
| 同義語(エイリアス) | Ces-1; carboxylesterase 1; ES-x; Liver carboxylesterase 1 precursor; Acyl coenzyme A:cholesterol acyltransferase; Ces1 | |
| SWISS-PROTのID | SWISS-PROT:Q8VCC2 | |
| EntrezGeneのID | EntrezGene:12623 | |
| その他のDBのID | MGI:88378 |
| yeast | 遺伝子名 | SES1 |
| 同義語(エイリアス) | YDR023W; YD9813.01; SERS; serine-tRNA ligase; Serine--tRNA ligase; Seryl-tRNA synthetase, cytoplasmic; SerRS | |
| SWISS-PROTのID | SWISS-PROT:P07284 | |
| EntrezGeneのID | EntrezGene:851587 | |
| その他のDBのID | SGD:S000002430 |
本文中に表示されているデータベースの説明
出典:Wikipedia
出典:『Wikipedia』 (2010/09/17 15:15 UTC 版)
SES-1 is a Dutch geostationary communications satellite which is operated by SES World Skies. It was originally ordered by SES Americom as a ground spare for AMC-5R, however in April 2008 a decision was made to launch it, and it was named AMC-1R. It was subsequently renamed AMC-4R, and finally SES-1 after SES Americom merged with SES New Skies to form SES World Skies. It was the third World Skies satellite to be launched following the merger, but the first to carry the new SES designation. SES-1 operates in geostationary orbit, and is intended to be located at a longitude of 101 degrees West, where it will replace the AMC-2 and AMC-4 satellites, and be used broadcast high-definition television to very small aperture terminals in the United States.