ChemicalBook > Product Catalog >Biochemical Engineering >Amino Acids and Derivatives >Tyrosine derivatives >3-IODO-L-TYROSINE

3-IODO-L-TYROSINE

3-IODO-L-TYROSINE Suppliers list
Company Name: Shanghai Daken Advanced Materials Co.,Ltd
Tel: +86-2158073036
Email: info@dakenam.com
Products Intro: Product Name:3-IODO-L-TYROSINE
CAS:70-78-0
Purity:99% Package:1KG,5KG,10KG
Company Name: career henan chemical co
Tel: +86-0371-86658258 +8613203830695
Email: sales@coreychem.com
Products Intro: Product Name:3-IODO-L-TYROSINE
CAS:70-78-0
Purity:98% Package:1ASSAYS;1USD
Company Name: Suzhou Ryan Pharmachem Technology Co.,Ltd.
Tel: +86-512-68780025
Email: sales@ryanchem.com
Products Intro: Product Name:3-iodo-L-tyrosine
CAS:70-78-0
Purity:99% Package:G;KG;T
Company Name: SIMAGCHEM CORP
Tel: +86-5922680277 +86-13806087780
Email: sale@simagchem.com
Products Intro: Product Name:3-Iodo-L-Tyrosine
CAS:70-78-0
Purity:0.99 Package:1kg,5kg,25kgs,200kgs;bulk
Company Name: TargetMol Chemicals Inc.
Tel: +1-781-999-5354; +17819995354
Email: marketing@targetmol.com
Products Intro: Product Name:H-Tyr(3-I)-OH
CAS:70-78-0
Purity:99.79% Package:1g;29USD Remarks:REAGENT;FOR LABORATORY USE ONLY

3-IODO-L-TYROSINE manufacturers

  • H-Tyr(3-I)-OH
  • H-Tyr(3-I)-OH pictures
  • $29.00
  • 2026-04-22
  • CAS:70-78-0
  • Purity: 99.79%
  • Supply Ability: 10g
  • 3-Iodo-l-tyrosine
  • 3-Iodo-l-tyrosine pictures
  • 2022-02-19
  • CAS:70-78-0
  • Min. Order: 1KG
  • Purity: 98.5%
  • Supply Ability: 100 tons
3-IODO-L-TYROSINE Basic information
Product Name:3-IODO-L-TYROSINE
Synonyms:3-Iodo-4-hydroxyphenylalanine;4-Hydroxy-3-iodophenylalanine;L-TYROSINE, 3-IODO-;3-I-L-Tyr-OH;3-Iodo-L-tyrosine≥ 98% (HPLC);H-L-Phe(3-I,4-OH)-OH;3-IODO-TYROSINE;3-IODO-L-TYROSINE
CAS:70-78-0
MF:C9H10INO3
MW:307.09
EINECS:200-744-8
Product Categories:amino;Unusual Amino Acids;Amino Acids 13C, 2H, 15N;Amino Acids;Biochemistry;Biological-modified Amino Acids;Amino Acids & Derivatives;Inhibitors;Aromatics;Chiral Reagents
Mol File:70-78-0.mol
3-IODO-L-TYROSINE Structure
3-IODO-L-TYROSINE Chemical Properties
Melting point 210 °C (dec.)(lit.)
density 1.7280 (estimate)
storage temp. -20°C
solubility dilute aqueous acid: soluble
Boiling point 391.0±42.0 °C(Predicted)
pKa2.21±0.20(Predicted)
form Solid
color White to off-white
Sensitive Light Sensitive
Merck 14,5047
BRN 2941266
Stability:Hygroscopic
InChI1S/C9H10INO3/c10-6-3-5(1-2-8(6)12)4-7(11)9(13)14/h1-3,7,12H,4,11H2,(H,13,14)/t7-/m0/s1
InChIKeyUQTZMGFTRHFAAM-ZETCQYMHSA-N
SMILESN[C@@H](Cc1ccc(O)c(I)c1)C(O)=O
CAS DataBase Reference70-78-0(CAS DataBase Reference)
EPA Substance Registry SystemL-Tyrosine, 3-iodo- (70-78-0)
Safety Information
Safety Statements 24/25
WGK Germany 3
8-10-23
HS Code 29225090
Storage Class11 - Combustible Solids
MSDS Information
ProviderLanguage
ACROS English
SigmaAldrich English
3-IODO-L-TYROSINE Usage And Synthesis
Chemical PropertiesWhite Solid
Uses3-Iodo-L-tyrosine has been used as an inhibitor for tyrosine hydroxylase enzyme in Drosophila and silkworm pupae.
UsesA novel flavoprotein responsible for iodide salvage in thyroid glands. A tyrosine hydroxylase inhibitor.
Uses3-iodo-l-tyrosine is used in the inhibition of tyrosine hydroxylase. 3-iodo-L-tyrosine is used in the rapid induction of prolactin secretion.
DefinitionChEBI: The monoiodotyrosine that is L-tyrosine carrying an iodo-substituent at position C-3 of the benzyl group.
General DescriptionIodotyrosine coupled with di-iodotyrosine results in the synthesis of 3,5,3′-tri-iodothyronine (T3) or 3,3′,5′-tri-iodothyronine (rT3).
Biochem/physiol Actions3-iodotyrosine (3-IY) inhibits tyrosine hydroxylase that catalyzes levodopa (L-DOPA) formation from tyrosine. Iodotyrosine deiodinase enzyme deficiency leads to elevated levels of 3-IY in serum and urine in severe hypothyroidism and goiter.
Synthesis
L-Tyrosine

60-18-4

3-IODO-L-TYROSINE

70-78-0

General procedure for the synthesis of (S)-2-amino-3-(4-hydroxy-3-iodophenyl)propionic acid from L-tyrosine: L-tyrosine (147.3 kg, 813 mol, 1 eq.) and concentrated hydrochloric acid were added to a 3000 L reactor. Ammonia (25%, 1980kg, 13.5w) was then added to form a white suspension. The suspension was cooled to -10 to 0°C. At this temperature, iodine (223 kg, 878 mol, 1.08 eq.) was added in 40 batches, taking about 5 hours. After addition, stirring was continued at -10 to 0 °C for about 2 hours. Samples were diluted with water and analyzed by HPLC, which showed 86.4% of A7 (target product), 11.3% of diiodide and 2.3% of unreacted L-tyrosine. Subsequently, the reaction solution was concentrated under vacuum at 0 to 40 °C for 28 h until the pH of the residue was reduced to 9.6. The concentrated solution was cooled to 20-30 °C, at which temperature the pH was adjusted to 8 by dropwise addition of an aqueous 18% hydrochloric acid solution, taking about 10 h. The reaction solution was then concentrated in a vacuum at 0 to 40 °C for about 1 h. The reaction solution was then concentrated at 0 to 40 °C for about 1 h. The reaction solution was then concentrated in a vacuum at 0 to 40 °C for about 1 h. A7 (0.25 kg) was added as a crystal seed and stirring was continued at 20-30 °C for about 1 hour. Subsequently, the pH of the mixture was continuously adjusted to 7.4 with 18% aqueous hydrochloric acid solution over a period of 3 hours and stirred for 1 hour at each pH stage. Finally, stirring was continued for 2 hours at 20-30°C (in total, about 1200 kg of 18% aqueous hydrochloric acid solution was used for crystallization). The slurry was centrifuged and the wet filter cake was washed twice each with water (230 kg, 1.6 w, each time) and acetone (230 kg, 1.6 w, each time) sequentially. The solid was dried under vacuum at 50-60 °C for about 48 h to give A7 (156.6 kg) with a purity of 96% and a water content of 2.5% as a light brown solid in a yield of 62.6% (uncorrected; after deduction of 0.25 kg of A7 crystalline seed).

Purification MethodsLikely impurities are tyrosine, diiodotyrosine and iodide. Crystallise it by dissolving it in concentrated ammonia (~200mg in ~20mL), evaporate to ~5mL and NH4Cl is added to pH4.5—5.0. After a few hours at 0o, the amino acid crystallises in needles. It is filtered off, washed with a little ice-cold H2O and dried in a vacuum. Alternatively dissolve it in dilute ammonia at room temperature, then add dilute acetic acid to pH 6. Store it at 0o. Recrystallisation of ~250mg from H2O (~5mL) removes any diiodotyrosine. It is an inhibitor of tyrosine hydroxylase with a Ki of ~500nM. [Harrington & Rivers Biochem J 38 320 1944, Rivers Chem & Ind (London) 21 1956, Beilstein 14 III 1562, 14 IV 1562.]
References[1] Journal of Labelled Compounds and Radiopharmaceuticals, 1998, vol. 41, # 4, p. 255 - 259
[2] Chemistry - A European Journal, 2010, vol. 16, # 34, p. 10523 - 10534
[3] Patent: WO2018/183198, 2018, A1. Location in patent: Page/Page column 32; 36-38
[4] Organic Letters, 2012, vol. 14, # 9, p. 2402 - 2405
[5] Journal of Medicinal Chemistry, 2018, vol. 61, # 8, p. 3350 - 3369
3-IODO-L-TYROSINE Preparation Products And Raw materials
Raw materials3,5-Diiodo-L-tyrosine dihydrate-->L-Tyrosine
Tag:3-IODO-L-TYROSINE(70-78-0) Related Product Information
REVERSE T3 3,5-Diiodo-L-thyronine 3,3',5-Triiodo-L-thyronine 3,3',5-TRIIODOTHYROPROPIONIC ACID Thyroxine-4-hydroxy-3,5-diiodophenyl Ether DISCONTINUED 3,5-DIIODO-4'-(4-HYDROXYPHENOXY)BENZOIC ACID N-ForMyl Thyroxine 3,5,3',5'-Tetraiodo Thyroaldehyde 3,3',5,5'-TETRAIODOTHYRO-ACETIC ACID 4-(4-Hydroxy-3,5-diiodophenoxy)-3,5-diiodobenzeneacetaMide 3,5,3',5'-Tetraiodo Thyrolactic Acid 3,3',5-TRIIODOTHYROACETIC ACID O-(4-hydroxy-3-iodophenyl)-3-iodo-L-tyrosine Liothyronine IMpurity E Levothyroxine impurity E Sodium levothyroxine Levothyroxine sodium N-Acetyl-3,5-diiodo-L-tyrosine