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| Cat. No. | Product Name | Field of Application | Chemical Structure |
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| DC41979 | Biotin-TAT (47-57) |
Biotin-TAT (47-57), a biotin tagged TAT, is a transactivator of transcription. Biotin-TAT (47-57) is one of the most widely used protein transduction domains (PTDs) into different primary cells is ATP- and temperature-dependent, indicating the involvement of endocytosis.
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| DC41977 | Histone H3 (1-35) |
Histone H3 (1-35) is a 35-residue peptide of histone H3. Histone H3 is one of the five main histones involved in the structure of chromatin in eukaryotic cells.
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| DC41976 | Myosin H Chain Fragment, mouse |
Myosin H Chain Fragment, mouse is the α-Myosin heavy chain peptide, can be used to induce experimental autoimmune myocarditis (EAM) mouse model.
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| DC41975 | LKKTETQ |
LKKTETQ, a peptide segment, is the active site within the protein thymosin β4 responsible for actin binding, cell migration and wound healing.
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| DC41973 | MOG (89-113), human |
MOG (89-113), human is a peptide fragment of human myelin oligodendrocyte glycoprotein.
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| DC41971 | MOG (35-55), human |
MOG (35-55), human is a component of CNS myelin. MOG (35-55), human is different from mMOG (35-55) by a proline for serine substitution at position 42. MOG (35-55), human is also immunogenic, but not encephalitogenic, and is only partially cross-reactive with mMOG35–55. MOG (35-55), human induces minimal clinical signs of EAE relative to the rodent peptide.
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| DC41968 | MBP MAPK Substrate |
MBP MAPK Substrate is used as an exogenous substrate for MAPK.
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| DC41967 | LLO (91-99) |
LLO (91-99) (Listeriolysin O (91-99)), an exotoxin, is a class I MHC-restricted T-cell epitopes of listeriolysin (LLO). LLO (91-99) is an essential antigen for induction of T-cell mediated immunity in vivo.
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| DC41965 | MBP (90-106) |
MBP (90-106) is a peptide fragment of MBP.
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| DC41964 | Vitronectin (367-378) |
Vitronectin (367-378) is a peptide corresponding to residues 367-378 of Vitronectin. Vitronectin is a multifunctional glycoprotein known in several human tumors for its adhesive role in processes such as cell growth, angiogenesis and metastasis.
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| DC41961 | Fmoc-Trp(Boc)-Ser(psi(Me,Me)pro)-OH |
Fmoc-Trp(Boc)-Ser(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41960 | Fmoc-Gln(Trt)-Thr(psi(Me,Me)pro)-OH |
Fmoc-Gln(Trt)-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41959 | Fmoc-Ile-Ser(psi(Me,Me)pro)-OH |
Fmoc-Ile-Ser(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41958 | Fmoc-Phe-Thr(psi(Me,Me)pro)-OH |
Fmoc-Phe-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41957 | Fmoc-Trp(Boc)-Thr(psi(Me,Me)pro)-OH |
Fmoc-Trp(Boc)-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41956 | Fmoc-Ser(tBu)-Ser(psi(Me,Me)pro)-OH |
Fmoc-Ser(tBu)-Ser(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41955 | Fmoc-Gly-Ser(psi(Me,Me)pro)-OH |
Fmoc-Gly-Ser(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41954 | Fmoc-Asp(OtBu)-Thr(psi(Me,Me)pro)-OH |
Fmoc-Asp(OtBu)-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41953 | Fmoc-Asp(OtBu)-Ser(psi(Me,Me)pro)-OH |
Fmoc-Asp(OtBu)-Ser(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41952 | Fmoc-Gly-Thr(psi(Me,Me)pro)-OH |
Fmoc-Gly-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41951 | Fmoc-Asn(Trt)-Ser(psi(Me,Me)pro)-OH |
Fmoc-Asn(Trt)-Ser(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41950 | Fmoc-Leu-Thr(psi(Me,Me)pro)-OH |
Fmoc-Leu-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41949 | Fmoc-Glu(OtBu)-Thr(psi(Me,Me)pro)-OH |
Fmoc-Glu(OtBu)-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41948 | Fmoc-Phe-Ser(psi(Me,Me)pro)-OH |
Fmoc-Phe-Ser(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41947 | Fmoc-Asn(Trt)-Thr(psi(Me,Me)pro)-OH |
Fmoc-Asn(Trt)-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41946 | Fmoc-Ile-Thr(psi(Me,Me)pro)-OH |
Fmoc-Ile-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41945 | Fmoc-Tyr(tBu)-Thr(psi(Me,Me)pro)-OH |
Fmoc-Tyr(tBu)-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41944 | Fmoc-Ser(tBu)-Thr(psi(Me,Me)pro)-OH |
Fmoc-Ser(tBu)-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41943 | Fmoc-Val-Thr(psi(Me,Me)pro)-OH |
Fmoc-Val-Thr(psi(Me,Me)pro)-OH is a dipeptide.
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| DC41942 | Fmoc-Ala-Thr(psi(Me,Me)pro)-OH |
Fmoc-Ala-Thr(psi(Me,Me))-OH is an Fmoc protected alanine derivative and can be used for peptide synthesis.
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