You Searched For: N-Carbobenzoxy-L-phenylalanyl-L-phenylalanine


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Supplier: Bachem Americas
Description: Sequence: Z-Phe-Phe-OH

Catalog Number: (TCC1170-001G)
Supplier: TCI America
Description: CAS Number: 13122-91-3
MDL Number: MFCD00191139
Molecular Formula: C26H26N2O5
Molecular Weight: 446.50
Purity/Analysis Method: >98.0% (T)
Form: Crystal
Melting point (°C): 159
Specific rotation [a]20/D: -10 deg (C=1, MeOH)

SDS


Supplier: Thermo Scientific Chemicals
Description: N-Boc-L-phenylalanyl-L-phenylalanine, 95%
Catalog Number: (100280-482)
Supplier: Indofine Chemical Company
Description: Rare Organics & BioChemicals 1gm H-Phe-Phe-OMe HCl 362.9 Room temperature.

Small Business Enterprise Minority or Woman-Owned Business Enterprise


Supplier: Ambeed
Description: Methyl L-phenylalanyl-L-phenylalaninate hydrochloride, Purity: 97%, CAS Number: 38017-65-1, Appearance: Solid, Storage: Inert atmosphere, Room Temperature, Size: 250MG

Supplier: Ambeed
Description: L-Phenylalanyl-L-phenylalanine, Purity: 98%, CAS Number: 2577-40-4, Appearance: Form: powder Colour: white, Storage: Keep in dark place, Inert atmosphere, Store in freezer, under -20C, Size: 250MG

Supplier: TCI America
Description: L-Phenylalanyl-L-phenylalanine

New Product

Catalog Number: (AAJ60043-03)
Supplier: Thermo Scientific Chemicals
Description: Evaporating 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP) solutions containing diphenylalanine forms nanotubes. These structures have been used for casting silver nanowires, the dipeptide is removed from the wires by enzymatic degradation

Supplier: Ambeed
Description: N-Carbobenzoxy-D-phenylalanine 97%

Catalog Number: (C-2315.0005BA)
Supplier: Bachem Americas
Description: Sequence: Z-D-Phe-OH


Supplier: Ambeed
Description: N-Carbobenzoxy-DL-phenylalanine 97%

New Product

Catalog Number: (10293-140)
Supplier: Bioss
Description: Aminoacyl-tRNA synthetases consist of a family of enzymes that catalyze the specific aminoacylation of tRNA by their cognate amino acid in the initial step of ribosome-dependent protein biosynthesis. FARSLA, also known as FRSA, CML33, FARSL or PheHA (phenylalanyl-tRNA synthetase, alpha subunit), is a member of the class-II aminoacyl-tRNA synthetase family and is highly expressed in proliferating cells of bone marrow. FARSLA is a cytoplasmic phenylalanine-tRNA synthetase that functions as a heterodimer consisting of a catalytic alpha-subunit and a regulatory beta-subunit. The alpha-subunit is responsible for forming the amino acid binding pocket, mediating the ATP/aminoacyl adenylate binding, and interacts with the acceptor stem of the tRNA. FARSLA functions in a cell cycle-dependent and differentiation-dependent manner.


Catalog Number: (10293-132)
Supplier: Bioss
Description: Aminoacyl-tRNA synthetases consist of a family of enzymes that catalyze the specific aminoacylation of tRNA by their cognate amino acid in the initial step of ribosome-dependent protein biosynthesis. FARSLA, also known as FRSA, CML33, FARSL or PheHA (phenylalanyl-tRNA synthetase, alpha subunit), is a member of the class-II aminoacyl-tRNA synthetase family and is highly expressed in proliferating cells of bone marrow. FARSLA is a cytoplasmic phenylalanine-tRNA synthetase that functions as a heterodimer consisting of a catalytic alpha-subunit and a regulatory beta-subunit. The alpha-subunit is responsible for forming the amino acid binding pocket, mediating the ATP/aminoacyl adenylate binding, and interacts with the acceptor stem of the tRNA. FARSLA functions in a cell cycle-dependent and differentiation-dependent manner.


Catalog Number: (10293-134)
Supplier: Bioss
Description: Aminoacyl-tRNA synthetases consist of a family of enzymes that catalyze the specific aminoacylation of tRNA by their cognate amino acid in the initial step of ribosome-dependent protein biosynthesis. FARSLA, also known as FRSA, CML33, FARSL or PheHA (phenylalanyl-tRNA synthetase, alpha subunit), is a member of the class-II aminoacyl-tRNA synthetase family and is highly expressed in proliferating cells of bone marrow. FARSLA is a cytoplasmic phenylalanine-tRNA synthetase that functions as a heterodimer consisting of a catalytic alpha-subunit and a regulatory beta-subunit. The alpha-subunit is responsible for forming the amino acid binding pocket, mediating the ATP/aminoacyl adenylate binding, and interacts with the acceptor stem of the tRNA. FARSLA functions in a cell cycle-dependent and differentiation-dependent manner.


Catalog Number: (10293-136)
Supplier: Bioss
Description: Aminoacyl-tRNA synthetases consist of a family of enzymes that catalyze the specific aminoacylation of tRNA by their cognate amino acid in the initial step of ribosome-dependent protein biosynthesis. FARSLA, also known as FRSA, CML33, FARSL or PheHA (phenylalanyl-tRNA synthetase, alpha subunit), is a member of the class-II aminoacyl-tRNA synthetase family and is highly expressed in proliferating cells of bone marrow. FARSLA is a cytoplasmic phenylalanine-tRNA synthetase that functions as a heterodimer consisting of a catalytic alpha-subunit and a regulatory beta-subunit. The alpha-subunit is responsible for forming the amino acid binding pocket, mediating the ATP/aminoacyl adenylate binding, and interacts with the acceptor stem of the tRNA. FARSLA functions in a cell cycle-dependent and differentiation-dependent manner.


Catalog Number: (10290-996)
Supplier: Bioss
Description: Aminoacyl-tRNA synthetases consist of a family of enzymes that catalyze the specific aminoacylation of tRNA by their cognate amino acid in the initial step of ribosome-dependent protein biosynthesis. FARSLA, also known as FRSA, CML33, FARSL or PheHA (phenylalanyl-tRNA synthetase, alpha subunit), is a member of the class-II aminoacyl-tRNA synthetase family and is highly expressed in proliferating cells of bone marrow. FARSLA is a cytoplasmic phenylalanine-tRNA synthetase that functions as a heterodimer consisting of a catalytic alpha-subunit and a regulatory beta-subunit. The alpha-subunit is responsible for forming the amino acid binding pocket, mediating the ATP/aminoacyl adenylate binding, and interacts with the acceptor stem of the tRNA. FARSLA functions in a cell cycle-dependent and differentiation-dependent manner.


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