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PROTAC

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Cat. No. Product Name Field of Application Chemical Structure
DC48914 FmocNH-PEG3-CH2CH2NH2 hydrochloride FmocNH-PEG3-CH2CH2NH2 (hydrochloride) is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC48932 Bis-PEG4-TFP ester Bis-PEG4-TFP ester is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC48988 N-Boc-PEG10-alcohol N-Boc-PEG10-alcohol is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC48989 Amino-PEG11-acid Amino-PEG11-acid is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49015 Acid-PEG9-t-butyl ester Acid-PEG9-t-butyl ester is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49017 Dodecylheptaglycol Dodecylheptaglycol is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49048 t-Boc-amido-PEG10-acid t-Boc-amido-PEG10-acid is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49049 t-Boc-N-amido-PEG10-Br t-Boc-N-amido-PEG10-Br is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49079 Acid-PEG10-t-butyl ester Acid-PEG10-t-butyl ester is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49097 Biotin-PEG6-NH-Boc Biotin-PEG6-NH-Boc is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49098 t-Boc-Aminooxy-PEG11-amine t-Boc-Aminooxy-PEG11-amine is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49115 Biotin-PEG9-amine Biotin-PEG9-amine is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49143 Biotin-PEG10-amine Biotin-PEG10-amine is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49144 Acid-PEG12-t-butyl ester Acid-PEG12-t-butyl ester is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49154 m-PEG15-acetic acid m-PEG15-acetic acid is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49166 N-bis(t-boc-N-amido-PEG3)-N-(PEG3-acid) (hydrochloride) N-bis(t-boc-N-amido-PEG3)-N-(PEG3-acid) hydrochloride is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49176 Acid-PEG14-t-butyl ester Acid-PEG14-t-butyl ester is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49178 HO-PEG18-OH HO-PEG18-OH is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49183 Biotin-PEG10-NHS ester Biotin-PEG10-NHS ester is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49184 t-Boc-N-amido-PEG15-Br t-Boc-N-amido-PEG15-Br is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49195 m-PEG18-acid m-PEG18-acid is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49207 ML 2-14 ML 2-14 is a PROTAC linker, which belongs to a polyethylene glycol (PEG) linker. ML 2-14 can be used in the synthesis of the PROTAC.
DC49213 Mal-amido-PEG15-acid Mal-amido-PEG15-acid is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49260 C18-PEG13-acid C18-PEG13-acid is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49270 DBCO-N-bis(PEG4-NHS ester) DBCO-N-bis(PEG4-NHS ester) is a PEG linker which contains two PEG4-NHS ester and a DBCO group. DBCO-N-bis(PEG4-NHS ester) is useful for protein modification or labeling.
DC49320 Bromo-PEG2-acetic acid Bromo-PEG2-acetic acid is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC49373 Thiol-PEG3-acetic acid Thiol-PEG3-acetic acid is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC50269 DBCO-PEG6-amine TFA DBCO-PEG6-amine (TFA) is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC50270 TCO-PEG2-Sulfo-NHS ester sodium TCO-PEG2-Sulfo-NHS ester sodium is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs.
DC50038 PROTAC SGK3 degrader-1 Featured PROTAC SGK3 degrader-1 (SGK3-PROTAC1), is a potent SKG3 degrader based on PROTAC. PROTAC SGK3 degrader-1 (0.3 μM) induces 50% degradation of endogenous SGK3 within 2 hours, with maximal 80% degradation observed within 8 hours, accompanied by a loss of phosphorylation of NDRG1 (an SGK3 substrate).

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