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(E)-4-aMino-2-Methylbut-2-en-1-olhydrochloride, with the molecular formula C5H11NO·HCl, is a chemical compound derived from 2-methylbut-2-en-1-ol. It is a significant compound in the realm of organic chemistry, often utilized as a reagent in organic synthesis. This hydrochloride salt has been investigated for its potential as a building block in the synthesis of pharmaceuticals and other biologically active compounds, showcasing its versatility and importance in chemical research and development.

128121-04-0

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128121-04-0 Usage

Uses

Used in Organic Synthesis:
(E)-4-aMino-2-Methylbut-2-en-1-olhydrochloride is used as a reagent in the field of organic synthesis for its ability to contribute to the formation of various complex organic molecules. Its unique structure allows it to participate in a range of chemical reactions, facilitating the creation of diverse compounds.
Used in Pharmaceutical Synthesis:
In the pharmaceutical industry, (E)-4-aMino-2-Methylbut-2-en-1-olhydrochloride is used as a building block for the synthesis of various pharmaceuticals and biologically active compounds. Its potential in this application is due to its structural properties that can be manipulated to create molecules with specific therapeutic effects.
Used in Chemical Research:
(E)-4-aMino-2-Methylbut-2-en-1-olhydrochloride also has applications in chemical research, where it may be employed to study reaction mechanisms, explore new synthetic pathways, and develop innovative materials. Its versatility makes it a valuable tool for advancing knowledge in the field of chemistry.
Used in Material Development:
Furthermore, (E)-4-aMino-2-Methylbut-2-en-1-olhydrochloride may have potential applications in the development of new materials. Its unique chemical properties could be harnessed to create materials with specific characteristics, such as improved stability or reactivity, for use in various industries.

Check Digit Verification of cas no

The CAS Registry Mumber 128121-04-0 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,2,8,1,2 and 1 respectively; the second part has 2 digits, 0 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 128121-04:
(8*1)+(7*2)+(6*8)+(5*1)+(4*2)+(3*1)+(2*0)+(1*4)=90
90 % 10 = 0
So 128121-04-0 is a valid CAS Registry Number.

128121-04-0SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 17, 2017

Revision Date: Aug 17, 2017

1.Identification

1.1 GHS Product identifier

Product name (E) 4-amino-2-methylbut-2-en-1-ol-hydrochloride

1.2 Other means of identification

Product number -
Other names 2-BUTEN-1-OL, 4-AMINO-2-METHYL-, HYDROCHLORIDE

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:128121-04-0 SDS

128121-04-0Downstream Products

128121-04-0Relevant articles and documents

SYNTHESIS OF THE NATURALLY OCCURING CYTOKININ 2'-DEOXYZEATIN RIBOSIDE

Napoli, Lorenzo de,Evidente, Antonio,Piccialli, Gennaro,Santacroce, Ciro,Vellone, Rita

, p. 701 - 703 (1990)

2'-Deoxyzeatin riboside, previously isolated together with other three cytokinins from culture filtrates of the pathogenic bacterium Pseudomonas amygdali, has been synthesized by reaction of 6-chloro-9-(2-dexy-β-D-ribofuranosyl)purine with (E)-4-amino-2-methyl-but-2-en-1-ol.The identity of the synthetic and the naturally occuring cytokinin has been established.

Peroxide-shunt substrate-specificity for the Salmonella typhimurium O 2-dependent tRNA modifying monooxygenase (MiaE)

Corder, Andra L.,Subedi, Bishnu P.,Zhang, Siai,Dark, Amanda M.,Foss Jr., Frank W.,Pierce, Brad S.

, p. 6182 - 6196 (2013/10/01)

Post-transcriptional modifications of tRNA are made to structurally diversify tRNA. These modifications alter noncovalent interactions within the ribosomal machinery, resulting in phenotypic changes related to cell metabolism, growth, and virulence. MiaE is a carboxylate bridged, nonheme diiron monooxygenase, which catalyzes the O2-dependent hydroxylation of a hypermodified-tRNA nucleoside at position 37 (2-methylthio-N6- isopentenyl-adenosine(37)-tRNA) [designated ms2i6A 37]. In this work, recombinant MiaE was cloned from Salmonella typhimurium, purified to homogeneity, and characterized by UV-visible and dual-mode X-band EPR spectroscopy for comparison to other nonheme diiron enzymes. Additionally, three nucleoside substrate-surrogates (i6A, Cl2i6A, and ms2i6A) and their corresponding hydroxylated products (io6A, Cl2io 6A, and ms2io6A) were synthesized to investigate the chemo- and stereospecificity of this enzyme. In the absence of the native electron transport chain, the peroxide-shunt was utilized to monitor the rate of substrate hydroxylation. Remarkably, regardless of the substrate (i6A, Cl2i6A, and ms2i6A) used in peroxide-shunt assays, hydroxylation of the terminal isopentenyl-C4-position was observed with >97% E-stereoselectivity. No other nonspecific hydroxylation products were observed in enzymatic assays. Steady-state kinetic experiments also demonstrate that the initial rate of MiaE hydroxylation is highly influenced by the substituent at the C2-position of the nucleoside base (v0/[E] for ms2i6A > i 6A > Cl2i6A). Indeed, the >3-fold rate enhancement exhibited by MiaE for the hydroxylation of the free ms 2i6A nucleoside relative to i6A is consistent with previous whole cell assays reporting the ms2io6A and io6A product distribution within native tRNA-substrates. This observation suggests that the nucleoside C2-substituent is a key point of interaction regulating MiaE substrate specificity.

Total synthesis of the alkaloids martinelline and martinellic acid via a hetero Diels-Alder multicomponent coupling reaction

Powell, David A.,Batey, Robert A.

, p. 2913 - 2916 (2007/10/03)

(formula presented) A concise synthesis of the guanidine alkaloids, (±)-martinelline and (±)-martinellic acid, using a protic acid catalyzed 2:1 hetero Diels-Alder coupling reaction between N-Cbz 2-pyrroline and methyl 4-aminobenzoate, is described. Protic acid catalysis, rather than Lewis acid catalysis, was necessary to achieve the desired sense of diastereocontrol in the coupling reaction.

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