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Home Product Protected Amino Acids, Resins & Reagents Standard Fmoc-Amino Acids Fmoc-Trp(Boc)-OH

DESCRIPTION

Product NameFmoc-Trp(Boc)-OH
SynonymsNα-Fmoc-Nin-Boc-L-tryptophan
Catalog No.AS0708
CAS Number143824-78-6
Molecular FormulaC31H30N2O6
Molecular Weight526.58 g/mol
AppearanceWhite powder
Specific Rotation-20° ± 4° (C=1 in DMF)
Storage Temperature≤ -15°C
Side-Chain ProtectionBoc-protected indole nitrogen
Primary ApplicationFmoc-SPPS

Product Overview

Fmoc-Trp(Boc)-OH is a protected L-tryptophan building block designed for Fmoc-SPPS.

The α-amino group is Fmoc-protected, while the indole nitrogen is protected by Boc.

Tryptophan is one of the most chemically sensitive standard amino acids because its electron-rich indole ring can participate in acid-mediated and oxidative side reactions.

Applications in Peptide Synthesis

ApplicationRole of Fmoc-Trp(Boc)-OH
Fmoc-SPPSProtected L-tryptophan building block
Trp-Containing PeptidesProtects the indole nitrogen during synthesis
Aromatic Binding MotifsIntroduces a large aromatic heterocycle
Fluorescence StudiesTrp provides intrinsic aromatic fluorescence
Membrane-Active PeptidesFrequently occurs at membrane interfaces
SAR StudiesUseful for aromatic and hydrogen-bonding interactions

Why Protect Tryptophan with Boc?

The indole ring is chemically more sensitive than many ordinary hydrophobic side chains.

Boc protection can reduce unwanted reactions involving the indole nitrogen during synthesis and final cleavage.

After peptide assembly, the protecting group is removed under acidic cleavage conditions.

Trp Oxidation Is a Major Quality Consideration

Tryptophan can undergo oxidative modification during synthesis, purification or storage.

Potential sources include:

  • peroxide-containing solvents or reagents

  • prolonged oxygen exposure

  • strong oxidizing conditions

  • inappropriate cleavage/workup chemistry

  • long-term storage

Oxidized Trp products may generate additional HPLC peaks and altered masses.

Alan Scientific practical view: for Trp-containing peptides, minimizing oxidative damage throughout the complete process is preferable to trying to solve the problem only during final purification.

Cleavage Chemistry Matters

Because tryptophan is sensitive to reactive species generated during strong-acid cleavage, appropriate scavenger systems and cleavage conditions can be important, particularly in sequences containing multiple sensitive residues.

The best cleavage cocktail should therefore be selected according to the entire amino-acid composition of the peptide, not simply the presence of Trp alone.

Tryptophan in Peptide Design

The indole side chain combines:

  • high aromatic surface area

  • hydrophobicity

  • hydrogen-bonding capability

  • intrinsic fluorescence

This makes Trp particularly important in membrane-active peptides and protein-binding interfaces.

Product Documents

A Safety Data Sheet (SDS / MSDS) is available for this product to support laboratory handling, storage and safety assessment.

📎 MSDS_Fmoc-Trp(Boc)-OH_AS0708.pdf

Related Technical Resources

Explore Standard Fmoc-Amino Acids.

Read Amino Acids & Peptide Building Blocks.

For difficult Trp-containing sequences, see Custom Peptide Synthesis.

Why Source Peptide Building Blocks from Alan Scientific?

Alan Scientific supplies standard and specialty peptide building blocks with technical support for synthesis, purification and analytical quality control.

Research Use Only

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Fmoc-Trp(Boc)-OH

Catalog No: AS0708
Cas No: 143824-78-6

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