硫酸化
WordNet
- convert into a sulfate
- a salt or ester of sulphuric acid (同)sulphate
Wikipedia preview
出典(authority):フリー百科事典『ウィキペディア(Wikipedia)』「2017/11/22 22:52:24」(JST)
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For sulfation in lead-acid batteries, see Lead–acid battery § Sulfation and desulfation.
Sulfation or sulfurylation (not to be confused with sulfonation) in biochemistry is the enzyme-catalyzed conjugation of a sulfo group (not a sulfate or sulfuryl group) to another molecule.[1] This biotransformation involves a sulfotransferase enzyme catalyzing the transfer of a sulfo group from a donor cosubstrate, usually 3'-phosphoadenosine-5'-phosphosulfate (PAPS), to a substrate molecule's hydroxyl or amine. Sulfation is involved in a variety of biological processes, including detoxification, hormone regulation, molecular recognition, cell signaling, and viral entry into cells.[1] It is among the reactions in phase II drug metabolism, frequently effective in rendering a xenobiotic less active from a pharmacological and toxicological standpoint, but sometimes playing a role in the activation of xenobiotics (e.g. aromatic amines, methyl-substituted polycyclic aromatic hydrocarbons). Another example of biological sulfation is in the synthesis of sulfonated glycosaminoglycans, such as heparin, heparan sulfate, chondroitin sulfate, and dermatan sulfate. Sulfation is also a possible posttranslational modification of proteins.
Contents
- 1 Tyrosine sulfation
- 1.1 Function
- 1.2 Regulation
- 2 See also
- 3 References
Tyrosine sulfation
Tyrosine sulfation is a posttranslational modification in which a tyrosine residue of a protein is sulfated by a tyrosylprotein sulfotransferase (TPST) typically in the Golgi apparatus. Secreted proteins and extracellular parts of membrane proteins that pass through the Golgi apparatus may be sulfated. Such sulfation was first discovered by Bettelheim in bovine fibrinopeptide B in 1954[2] and later found be present in animals and plants but not in prokaryotes or in yeasts. Sulfation sites are tyrosine residues exposed on the surface of the protein typically surrounded by acidic residues. A detailed description of the characteristics of the sulfation site is available from PROSITE (PROSITE pattern: PS00003)[1]. Two types of tyrosylprotein sulfotransferases (TPST-1 and TPST-2) have been identified.
Function
Sulfation plays role in strengthening protein–protein interactions. Types of human proteins known to undergo tyrosine sulfation include adhesion molecules, G-protein-coupled receptors, coagulation factors, serine protease inhibitors, extracellular matrix proteins, and hormones. Tyrosine O-sulfate is a stable molecule and is excreted in urine in animals. No enzymatic mechanism of tyrosine sulfate desulfation is known to exist. By knock-out of TPST genes in mice, it may be observed that tyrosine sulfation has effects on the growth of the mice, such as body weight, fecundity, and postnatal viability.
Regulation
There is very limited evidence that the TPST genes are subject to transcriptional regulation and tyrosine O-sulfate is very stable and cannot be easily degraded by mammalian sulfatases. Tyrosine O-sulfation is an irreversible process in vivo. An antibody called PSG2 shows high sensitivity and specificity for epitopes containing sulfotyrosine independent of the sequence context.
See also
- Glucuronosylation
- Methylation
- Hydrogenation
- Rosemary Waring
- Acetylation
References
- ^ a b Chapman, Eli; Best, Michael D.; Hanson, Sarah R.; Wong, Chi-Huey (2004-07-05). "Sulfotransferases: Structure, Mechanism, Biological Activity, Inhibition, and Synthetic Utility". Angewandte Chemie International Edition. 43 (27): 3526–3548. doi:10.1002/anie.200300631. ISSN 1521-3773. PMID 15293241.
- ^ Bettelheim, F. R. (1954). "Tyrosine-O-sulfate in a peptide from fibrinogen". J. Am. Chem. Soc. 76 (10): 2838–2839. doi:10.1021/ja01639a073.
- Moore KL (2003). "The biology and enzymology of protein tyrosine O-sulfation". J. Biol. Chem. 278 (27): 24243–6. doi:10.1074/jbc.R300008200. PMID 12730193.
- Hoffhines AJ; Damoc, E; Bridges, KG; Leary, JA; Moore, KL (2006). "Detection and purification of tyrosine-sulfated proteins using a novel anti-sulfotyrosine monoclonal antibody". J. Biol. Chem. 281 (49): 37877–87. doi:10.1074/jbc.M609398200. PMC 1764208 . PMID 17046811.
Protein primary structure and posttranslational modifications
|
General |
- Peptide bond
- Protein biosynthesis
- Proteolysis
- Racemization
- N-O acyl shift
|
N terminus |
- Acetylation
- Carbamylation
- Formylation
- Glycation
- Methylation
- Myristoylation (Gly)
|
C terminus |
- Amidation
- Glycosyl phosphatidylinositol (GPI)
- O-methylation
- Detyrosination
|
Single specific AAs |
Serine/Threonine |
- Phosphorylation
- Dephosphorylation
- Glycosylation
- Methylidene-imidazolone (MIO) formation
|
Tyrosine |
- Phosphorylation
- Dephosphorylation
- Sulfation
- Porphyrin ring linkage
- Adenylylation
- Flavin linkage
- Topaquinone (TPQ) formation
- Detyrosination
|
Cysteine |
- Palmitoylation
- Prenylation
|
Aspartate |
|
Glutamate |
- Carboxylation
- Methylation
- Polyglutamylation
- Polyglycylation
|
Asparagine |
- Deamidation
- Glycosylation
|
Glutamine |
|
Lysine |
- Methylation
- Acetylation
- Acylation
- Adenylylation
- Hydroxylation
- Ubiquitination
- Sumoylation
- ADP-ribosylation
- Deamination
- Oxidative deamination to aldehyde
- O-glycosylation
- Imine formation
- Glycation
- Carbamylation
- Succinylation
|
Arginine |
- Citrullination
- Methylation
- ADP-ribosylation
|
Proline |
|
Histidine |
- Diphthamide formation
- Adenylylation
|
Tryptophan |
|
|
Crosslinks between two AAs |
Cysteine-Cysteine |
|
Methionine-Hydroxylysine |
|
Lysine-Tyrosylquinone |
- Lysine tyrosylquinone (LTQ) formation
|
Tryptophan-Tryptophylquinone |
- Tryptophan tryptophylquinone (TTQ) formation
|
|
Three consecutive AAs
(chromophore formation) |
Serine–Tyrosine–Glycine |
- p-Hydroxybenzylidene-imidazolinone formation
|
Histidine–Tyrosine–Glycine |
- 4-(p-hydroxybenzylidene)-5-imidazolinone formation
|
|
Crosslinks between four AAs |
Allysine-Allysine-Allysine-Lysine |
|
|
Protein primary structure and posttranslational modifications
|
General |
- Peptide bond
- Protein biosynthesis
- Proteolysis
- Racemization
- N-O acyl shift
|
N terminus |
- Acetylation
- Carbamylation
- Formylation
- Glycation
- Methylation
- Myristoylation (Gly)
|
C terminus |
- Amidation
- Glycosyl phosphatidylinositol (GPI)
- O-methylation
- Detyrosination
|
Single specific AAs |
Serine/Threonine |
- Phosphorylation
- Dephosphorylation
- Glycosylation
- Methylidene-imidazolone (MIO) formation
|
Tyrosine |
- Phosphorylation
- Dephosphorylation
- Sulfation
- Porphyrin ring linkage
- Adenylylation
- Flavin linkage
- Topaquinone (TPQ) formation
- Detyrosination
|
Cysteine |
- Palmitoylation
- Prenylation
|
Aspartate |
|
Glutamate |
- Carboxylation
- Methylation
- Polyglutamylation
- Polyglycylation
|
Asparagine |
- Deamidation
- Glycosylation
|
Glutamine |
|
Lysine |
- Methylation
- Acetylation
- Acylation
- Adenylylation
- Hydroxylation
- Ubiquitination
- Sumoylation
- ADP-ribosylation
- Deamination
- Oxidative deamination to aldehyde
- O-glycosylation
- Imine formation
- Glycation
- Carbamylation
- Succinylation
|
Arginine |
- Citrullination
- Methylation
- ADP-ribosylation
|
Proline |
|
Histidine |
- Diphthamide formation
- Adenylylation
|
Tryptophan |
|
|
Crosslinks between two AAs |
Cysteine-Cysteine |
|
Methionine-Hydroxylysine |
|
Lysine-Tyrosylquinone |
- Lysine tyrosylquinone (LTQ) formation
|
Tryptophan-Tryptophylquinone |
- Tryptophan tryptophylquinone (TTQ) formation
|
|
Three consecutive AAs
(chromophore formation) |
Serine–Tyrosine–Glycine |
- p-Hydroxybenzylidene-imidazolinone formation
|
Histidine–Tyrosine–Glycine |
- 4-(p-hydroxybenzylidene)-5-imidazolinone formation
|
|
Crosslinks between four AAs |
Allysine-Allysine-Allysine-Lysine |
|
|
UpToDate Contents
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English Journal
- Proteoglycan desulfation: a critical step in oncogenesis?
- Singh V, Bhat R.
- Frontiers in bioscience (Landmark edition). 2020 Jan;25()760-780.
- Proteoglycans are essential constituents of tissue- and organ microenvironments, modulating both the structural scaffolds that surround cells as well as signaling cues that determine cellular phenotype. An important modification of proteoglycans is the sulfation of the monosaccharides that comprise
- PMID 31585916
- Hydrophobized laminarans as new biocompatible anti-oomycete compounds for grapevine protection.
- Paris F, Trouvelot S, Jubien M, Lecollinet G, Joubert JM, Chiltz A, Héloir MC, Negrel J, Adrian M, Legentil L, Daire X, Ferrières V.
- Carbohydrate polymers. 2019 Dec;225()115224.
- Laminaran, a β-(1→3)-glucan extracted from Laminaria digitata, is a known elicitor of plant defenses, but provides only low level of disease control in vineyard trials. In this context, laminaran was partly hydrophobized by grafting from 1.6 to 7.6 lauryl chains to the native saccharidic chain an
- PMID 31521294
- Identification of prototype compounds and derived metabolites of naoxintong capsule in beagle dog urine and feces by UFLC-Q-TOF-MS/MS.
- He Y, Su W, Chen T, Zeng X, Yan Z, Guo J, Yang W, Wu H.
- Journal of pharmaceutical and biomedical analysis. 2019 Nov;176()112806.
- Naoxintong Capsule (NXTC) is a well-known Traditional Chinese Medicine (TCM) medication that has been widely employed in the treatment of cardiovascular and cerebrovascular diseases. Although its chemical constituents had been characterized, the in vivo biotransformation of those components remain o
- PMID 31421286
Japanese Journal
- Identification of a novel flavonoid glycoside sulfotransferase in Arabidopsis thaliana
- Hashiguchi Takuyu,Sakakibara Yoichi,Shimohira Takehiko [他]
- The journal of biochemistry 155(2), 91-97, 2014-02
- NAID 40019985700
- P-49 緑藻類バイオマス由来の多糖の化学構造解析(藻類,Poster Session)
- 椿 俊太郎,平岡 雅規,西村 裕志,片平 正人,渡辺 隆司
- バイオマス科学会議発表論文集 (9), 150-151, 2014-01-08
- … Ulvans of both species were composed of α-1,4-linked rhamnose with sulfation at C3, β-1,4-linked glucuronic acid and β-1,4-linked xylose. …
- NAID 110009820210
- ヘパラン硫酸グリコサミノグリカンの硫酸化における重要な酵素NDST1の足細胞特異的欠損は、in vivoにおける足細胞の形態異常をもたらす
- Sugar Terrel,Wassenhove-McCarthy Deborah J.,Esko Jeffrey D. [他]
- Kidney international selections : official journal of the International Society of Nephrology 12(3), 83-92, 2014
- NAID 40020173327
★リンクテーブル★
[★]
- 関
- H2SO4、inorganic sulfate、sulfate ester、sulfated、sulfation、sulfuric acid、sulfuric acid ester、sulphate、sulphuric acid
[★]
- 関
- H2SO4、sulfate、sulfated、sulfation、sulfuric acid、sulphuric acid
[★]
- 英
- sulfation
- 関
- 硫酸、硫酸エステル、硫酸塩、sulfate、sulphate、sulfated
[★]
- 関
- sulfate、sulfation、sulphate