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- protein which after translation is cleaved into one or more smaller proteins2 statements, 0 sitelinks - 15:58, 10 March 2024
- ...one''')は、一緒に合成された[[peptide horumone/ja|ペプチドホルモン]]からなる[[hormone/ja|ホルモン]]の[[Precursor (chemistory)/ja|前駆体]]であり、多くの場合タンパク質の折りたたみと特定の末端への追加のペプチド鎖の結合によって作られる発現抑制構造の [[peptide hormone/ja|ペプチドホルモン]]の場合、プロホルモンからホルモンへの変換過程([[Protein precursor/ja|プロタンパク質]]から[[protein/ja|タンパク質]]への変換)は、一般的に[[endoplasmic reticulum/ja|小胞体 ...9 KB (165 words) - 20:16, 23 April 2024
- {{Short description|Precursor of a hormone}} A '''prohormone''' is a committed [[Precursor (chemistry)|precursor]] of a [[hormone]] consisting of [[peptide hormone]]s synthesized together ...7 KB (1,035 words) - 20:02, 23 April 2024
- {{Short description|Precursor of a hormone}} A '''prohormone''' is a committed [[Precursor (chemistry)|precursor]] of a [[hormone]] consisting of [[peptide hormone]]s synthesized together ...7 KB (1,069 words) - 20:02, 23 April 2024
- ...olved in the transfer of [[acetyl]] groups, in some instances to attach to proteins closely associated with activating and deactivating genes. By this theory, ...4 KB (607 words) - 15:34, 3 April 2024
- ...olved in the transfer of [[acetyl]] groups, in some instances to attach to proteins closely associated with activating and deactivating genes. By this theory, ...4 KB (623 words) - 15:33, 3 April 2024
- ...de/ja#Notes on terminology|デカペプチド]]を[[Proteolysis/ja#Cleavage of precursor proteins|分解]]する。このデカペプチドは[[Angiotensin/ja#Angiotensin I|アンジオテンシンI]]として知られている。 ...c pressure/ja|静水圧]]が低下し、[[oncotic pressure/ja|オンコティック圧]]が上昇する(未濾過の[[plasma proteins/ja|血漿タンパク質]]による)。尿細管周囲毛細血管における静水圧低下とオンコティック圧上昇の効果により、尿細管液の再吸収が促進される。 ...15 KB (558 words) - 09:29, 28 March 2024
- ...od flow]] is reduced, [[juxtaglomerular cell]]s in the kidneys convert the precursor [[prorenin]] (already present in the blood) into [[renin]] and secrete it d # Renin [[Proteolysis#Cleavage of precursor proteins|cleaves]] a [[Peptide#Notes on terminology|decapeptide]] from [[angiotensin ...12 KB (1,713 words) - 09:17, 27 March 2024
- ...od flow]] is reduced, [[juxtaglomerular cell]]s in the kidneys convert the precursor [[prorenin]] (already present in the blood) into [[renin]] and secrete it d # Renin [[Proteolysis#Cleavage of precursor proteins|cleaves]] a [[Peptide#Notes on terminology|decapeptide]] from [[angiotensin ...12 KB (1,757 words) - 09:15, 27 March 2024
- ...for key [[metabolism|metabolic]] processes or is a [[precursor (chemistry)|precursor]] needed to make one. | A [[Precursor (chemistry)|precursor]] of [[cofactor (biochemistry)|coenzymes]] called [[flavin adenine dinucleo ...22 KB (3,101 words) - 08:50, 18 February 2024
- ...for key [[metabolism|metabolic]] processes or is a [[precursor (chemistry)|precursor]] needed to make one. | A [[Precursor (chemistry)|precursor]] of [[cofactor (biochemistry)|coenzymes]] called [[flavin adenine dinucleo ...22 KB (3,143 words) - 08:50, 18 February 2024
- ...e [[Protein precursor|precursors]] of antibodies, just as [[zymogen]] is a precursor of an [[enzyme]]. But, by 1903, he understood that an antigen induces the p ...ite. While antigens are the "target" of antibodies, immunoglobulin-binding proteins "attack" antibodies. ...19 KB (2,671 words) - 17:45, 3 January 2023
- ...), [[thromboxane-3]], and [[leukotriene-5]] [[eicosanoid]]s. EPA is both a precursor and the [[Hydrolysis|hydrolytic]] [[Metabolism|breakdown]] product of eicos ...EPA from food containing it. Because EPA is also a [[Precursor (chemistry)|precursor]] to [[docosahexaenoic acid]] (DHA), ensuring a sufficient level of EPA on ...12 KB (1,765 words) - 20:40, 14 April 2024
- ...), [[thromboxane-3]], and [[leukotriene-5]] [[eicosanoid]]s. EPA is both a precursor and the [[Hydrolysis|hydrolytic]] [[Metabolism|breakdown]] product of eicos ...EPA from food containing it. Because EPA is also a [[Precursor (chemistry)|precursor]] to [[docosahexaenoic acid]] (DHA), ensuring a sufficient level of EPA on ...12 KB (1,811 words) - 20:39, 14 April 2024
- ...を含む食品からのEPAの吸収に比べるとはるかに低い。EPAは[[docosahexaenoic acid/ja|ドコサヘキサエン酸]](DHA)の[[Precursor (chemistry)/ja|前駆体]]でもあるため、EPAもDHAも含まない食事で十分なEPA量を確保することは、EPAを合成するために必要な余分な * [http://www.ebi.ac.uk/pdbe-srv/PDBeXplore/ligand/?ligand=EPA EPA bound to proteins] in the [[Protein Data Bank/ja|PDB]] ...15 KB (751 words) - 20:42, 14 April 2024
- ...y)/ja|補酵素]](一般的には[[cofactor (biochemistry)/ja|補酵素]])であるか、あるいはビタミンを作るのに必要な[[precursor (chemistry)/ja|前駆体]]である。 ...や[[flavin mononucleotide/ja|FMN]]と呼ばれる[[cofactor (biochemistry)/ja|補酵素]]の[[Precursor (chemistry)/ja|前駆体]]であり、他のビタミンの活性化を含む[[flavoprotein/ja|フラボタンパク質]]の酵素反応に必要であ ...27 KB (1,318 words) - 10:37, 19 February 2024
- ...s and other [[tissue (biology)|tissues]]. Beyond their role as residues in proteins, amino acids participate in a number of processes such as [[neurotransmitte ...ischer|Emil Fischer]] and [[Franz Hofmeister]] independently proposed that proteins are formed from many amino acids, whereby bonds are formed between the amin ...47 KB (6,761 words) - 10:25, 29 March 2024
- ...s and other [[tissue (biology)|tissues]]. Beyond their role as residues in proteins, amino acids participate in a number of processes such as [[neurotransmitte ...ischer|Emil Fischer]] and [[Franz Hofmeister]] independently proposed that proteins are formed from many amino acids, whereby bonds are formed between the amin ...49 KB (6,979 words) - 10:25, 29 March 2024
- ...um/ja|小胞体]]上の[[signal recognition particle/ja|シグナル認識粒子]]によって認識され、[[Protein precursor/ja|プレプロペプチド]]を小胞体に導く役割を果たす。したがって、新しいペプチドの合成が終わると、翻訳後プロセシングのために小胞体に直接入る。現在では {{Fibrous proteins/ja}} ...44 KB (1,385 words) - 18:39, 23 April 2024
- ...espiration]] or [[aerobic respiration]]. In addition, the cycle provides [[precursor (chemistry)|precursors]] of certain [[amino acid]]s, as well as the [[reduc ...h of carbon dioxide and water. Through [[catabolism]] of sugars, fats, and proteins, the two-carbon organic product acetyl-CoA is produced which enters the cit ...38 KB (5,368 words) - 11:38, 31 March 2024