Linkers play a vital role in oligo synthesis, specifically in two main applications:
Solid Phase Attachment: During oligonucleotide synthesis, a linker molecule covalently attaches the growing oligonucleotide chain to a solid support. This solid support is typically a controlled-pore glass (CPG) bead. The linker offers a stable bond to the solid phase, allowing for the stepwise addition of nucleotides to create the desired oligonucleotide sequence. After synthesis is complete, the linker is cleaved under specific conditions, releasing the purified oligonucleotide from the solid support.
Bioconjugation: Linkers can also be incorporated at either the 5′ or 3′ terminus of the oligonucleotide to facilitate conjugation with various biomolecules. These biomolecules can include fluorophores, quenchers, antibodies, nanoparticles, or other functional groups. Bioconjugation allows researchers to attach functionalities to the oligonucleotide, enabling diverse applications such as:
• Fluorescence in situ hybridization (FISH) for cellular imaging
• Detection of specific nucleic acid sequences
• Immunoassays
• Drug delivery
There are various types of linkers available for oligo synthesis, each with unique properties and functionalities. Some common linker types include:
• Cleavable Linkers: These linkers are designed to be cleaved from the solid support under specific conditions, such as exposure to acid or base. This allows for the release of the purified oligonucleotide.
• Non-Cleavable Linkers: These linkers form a permanent bond with the solid support. While the oligonucleotide remains tethered to the solid phase, non-cleavable linkers are useful for applications like microarrays where the oligos stay attached to the surface.
• Biotinylated Linkers: These linkers contain biotin, a small molecule that can bind to streptavidin with high affinity. This property allows for easy purification of the oligonucleotide using streptavidin-coated magnetic beads.
• Fluorescent Linkers: These linkers incorporate a fluorescent moiety, enabling the direct detection of the labeled oligonucleotide.
The choice of linker in oligo synthesis depends on the desired application and the downstream processes involved.
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TFA-C3-amine-linker Phosphoramidite
C14H25F3N3O3P
Biotin TEG CE-Phosphoramidite
C52H76N5O11PS
DMTr-Biotin-NH-PEG3-CE-phosphoramidite
C46H64N5O8PS
3-ODMTr-3′-(tert-butyldisulfaneyl)dipropyl diisopropylphosphoramidite
C37H54NO5PS2
C18 Phosphoramidite
C27H55N2O2P
PC-Retinoic acid (PC-RA)-CE Phosphoramidite
C65H95N5O11P2
(4-tritylpiperazine-1-yl)-formate-TEG
C30H36N2O5
(4-tritylpiperazine-1-yl)-formate-TEG-Succinate, TEA salt
C34H40N2O8
Sar-Glu Unilinker, TEA salt
C43H42N2O11 (free acid)
GalNAc Cluster Amide C7 Linker DMT Succinate Macroporous Aminomethyl Resin
Peracetylated GalNAc Butylamine, TFA salt
C18H30N2O9 (free base)
Peracetylated GalNAc PEG linker propanoic acid
C21H33NO13
Nα-(Fmoc-aminoethyl)-D-Arg(Pbf)-OMe
C37H47N5O7S (free base)
5-(4-hydroxypiperidin-1-yl)-5-oxopentanoic acid
C10H17NO4
Methacrylate C6 Phosphoramidite
C19H36N3O3P
12-O-DMTr-dodecane-bis-(diisopropylamino)-Phosphane
C45H71N2O4P
1, 3-di-O-DMTr-glycerol-CE-Phosphoramidite
C54H61N2O8P
MMT-octylamine-linker Phosphoramidite
C37H52N3O3P
DMTr-hydroxymethyl hexyl-biotin Phosphoramidite
C47H66N5O7PS
2-cyanoethyl (6-(3-(prop-2-yn-1-yloxy)-2, 2-bis((prop-2-yn-1-yloxy)methyl)propoxy)hexyl diisopropylphosphoramidite
C29H47N2O6P
1-O-DMTr-Glyceryl-TEG-[1-propyl-3N-carbamoylcholesteryl] succinate LCAA CPG 500Å
1-O-DMTr-Glyceryl-TEG-[1-propyl-3N-carbamoylcholesteryl] succinate LCAA CPG 1000Å
3′-thiol modifier 6 S-S-DMTr-linker CPG (1000Å)
Cholesteryl succinate, TEA salt (plant source)
C61H86O9 (free acid)
Cholesteryl-TEG-succinate (plant source)
C65H93NO13 (free acid)
3′-thiol modifier 6 S-S-DMTr-linker-Succinate, TEA salt
C35H44O9S2 (free acid)
Peracetylated GalNAc PEG linker-Azide
C22H36N4O12
Peracetylated GalNAc PEG linker-Amino
DMTr-Cholesteryl-TEG Phosphoramidite (plant source)
C70H106N3O11P
Cholesterol tetraethylene glycol (TetraEG) amidite (plant source)
C48H86N3O8P
n-Butyl-2-cyanoethyl-N, N-diisopropylphosphoramidite
C13H27N2O2P
MMT-propylamine-linker Phosphoramidite
C32H42N3O3P
MMT-butylamine-linker Phosphoramidite
C33H44N3O3P
MMT-pentylamine-linker Phosphoramidite
C34H46N3O3P
MMT-heptylamine-linker Phosphoramidite
C36H50N3O3P
Spacer-C12 Phosphoramidite
C42H61N2O5P
1, 3-di-O-DMTr-glycerol-bis-(diisopropylamino)-Phosphane
C57H71N2O7P
6-O-DMTr-hexane-bis-(diisopropylamino)-Phosphane
C39H59N2O4P
Biotin-LC-NHS Ester
C20H30N4O6S
2, 5-dioxopyrrolidin-1-yl 3-(dodecyldisulfaneyl)propanoate
C19H33NO4S2
1, 3-dioxo-2-(3-dimethoxytrityloxyprop-1-yl)isoindole-5-carboxylic acid, TEA salt
C33H29NO7 (free acid)
Benzyl N-[2-(Fmoc)aminoethyl]glycinate
C26H26N2O4(free base)
t-butylbenzoyl biotin-NHS ester
C25H31N3O6S
1, 3-dioxo-2-(6-dimethoxytrityloxyhex-1-yl)isoindole-5-carboxylic acid, TEA salt
C36H35NO7
Propargyl-PEG2-NH2
C7H13NO2
6-amino(Fmoc)-1-O-DMT-2-hydroxymethylhexan-1-ol
C43H45NO6
N-Fmoc-2-(2-aminoethoxy)ethanol
C19H21NO4
5′-DMT-dT-linker-NH2
C39H46N4O8
1-(4,4′-Dimethoxytrityloxy)-3-(6-(Cholest-5-en-3β-oxy)hexyloxy) propan-2-ol (plant source)
C57H82O6
Cholesterol tetraethylene glycol (TetraEG) (plant source)
C39H69NO7
Cholesteryl amidite (plant source)
C68H103N2O10P
Cholesterol-TEG
C61H89NO10
β-Mannose C4 alcohol
C18H28O11
α-Mannose C4 alcohol
C18H28O11
Galactose C4 alcohol
C18H28O11
Glucose C4 alcohol
C18H28O11
benzyl 6-aminohexanoate
C20H27NO5S
Methacrylate C6
C10H19NO2
(S)-2-amino-3-(bis(4-methoxyphenyl)(phenyl)methoxy)-1-(4-(hydroxymethyl)piperidin-1-yl)propan-1-one
C30H36N2O5
2-(2-nitrophenyl)propyl imidazole-1-carboxylate
C13H13N3O4
(R)-4-((1-((((9H-fluoren-9-yl)methoxy)carbonyl)amino)-3-(bis(4-methoxyphenyl)(phenyl)methoxy)propan-2-yl)oxy)-4-oxobutanoic acid, Pyridine salt
C43H41NO9 (free acid)
N-[2-[(2-Aminoethyl)amino]ethyl]-1,2-dithiolane-3-pentanamide
C12H25N3OS2
N2-[5-(1,2-Dithiolan-3-yl)-1-oxopentyl]-L-arginine methyl ester
C15H29N4O3S2+
3’-thiol modifier 6 S-S-DMTr-linker LCAA CPG 500Å (Loading: 40-60μmol/g)
N6-Tr-6-amino-hexanol
C25H29NO
DMTr-hydroxymethyl hexyl phthalimide
C36H37NO6
TEG linker
C9H21NO4
TEG Linker 2
C33H45NO8
6-N3-1-hexanol
C6H13N3O
6-amino(Fmoc)-2-hydroxymethylhexan-1-ol
C22H27NO4
DMT-Hexylamine-Linker Phosphoramidite
C36H50N3O4P
1-O-DMTr-Glycerol-TEG-Cholesterol-2-CE-Phosphoramidite
C68H103N2O10P
Fmoc-aminopropyloxy-3-DMTr-glycerol
C42H43NO7
TFA-EO Linker
C7H8F3NO2
1, 3-Di-DMT Glycerol succinate, TEA salt
C49H48O10 (free acid)
N-(Boc-aminoethyl)-Gly-oEt
C11H22N2O4
4-[3-[bis(4-methoxyphenyl)-phenylmethoxy]propoxy]-4-oxobutanoic acid, triethylamine salt
C28H30O7 (free acid)
Diethyl 2-(4-chlorobutyl)malonate
C11H19ClO4
(R)-2-amino-3-(bis(4-methoxyphenyl)(phenyl)methoxy) propan-1-ol
C24H27NO4
DFA-AH Linker Amidite
C17H32F2N3O3P
Phenylacetyl HA amidite linker
C23H38N3O3P
Fmoc-AEG-OMe•HCl
C20H23ClN2O4
Fmoc-AEG-OH•HCl
C19H21ClN2O4
Ethyl-γ-(N-(3-hydroxypropyl)anilino)-butyrate
C15H23NO3
6-MMT-NH-Hexanol
C26H31NO2
Amino-ON succinate LCAA CPG 1000Å (30±5 μmol/g)
Amino-ON succinate LCAA CPG 500Å (35±5 μmol/g)
ssH-Linker
C38H53N4O5P
Thiol-modifier C6 S-S Succinate, TEA salt
C37H48O7S2 (free acid)
DMT-2, 2-diethylsulfonyl-Succinate, TEA salt
C29H32O9S
Amino-PEG4-alcohol
C8H19NO4
6-Maleimidohexanoic acid N-hydroxysuccinimide ester
C14H16N2O6
Folate-EDA DBCO
C40H38N10O7
Sulfo-SMCC
C16H18N2O9S (free acid)
Alkyne-Modifier Serinol
C33H38N2O6
Palmitate Serinol
C43H62N2O6
3′-Azido-Modifier Serinol
C31H37N5O6
Fmoc-amino-DMTr-C7 linker phosphoramidite
C52H62N3O7P
6-Bromohexyl-Phosphoramidite
C15H30BrN2O2P
5-Chlorosaligenyl-N, N-diisopropylphosphoramidite
C13H19ClNO2P
5′-Carboxy-Modifier C10 Phosphoramidite
C23H40N3O6P
5′-Carboxy-C10 CE-Phosphoramidite
C39H52ClN2O4P
1, 3-distearamidopropan-2-CE Phosphoramidite (DiAcLip17)
C48H95N4O4P
1-O-DMT-3-(DMTr-TEG)glyceryl-2-CE-Phosphoramidite
C62H77N2O12P
Phosphate-ON Phosphoramidite
C49H62N7O11P
Acridine Phosphoramidite
C51H60ClN4O6P
Symmetric Doubler Phosphoramidite
C64H79N4O10P
Long Trebler Phosphoramidite
C89H107N2O15P
5′-Amino-Modifier TEG CE-Phosphoramidite
C19H35F3N3O6P
Amino-ON succinate
C39H42N2O10 (free acid)
Amino-PEG3-alcohol
C6H15NO3