Most popular non-nucleosidic phosphoramidites for modification and labeling are based on two structural types: 1,2-diols and 1,3-diols. Products based on a 1,2-diol backbone were first described to allow amino-modification and biotin labeling. Technically, the 1,2-diol backbone has some drawbacks relative to the 1,3-diol backbone. The 1,2-diol backbone can participate in a dephosphorylation reaction since the 1,2-diol can form a favored 5-membered cyclic phosphate intermediate. This reaction is competitive with simple hydrolysis of the protecting groups and leads to some loss of label. However, the degree of loss at the 3’ terminus can be limited by the removal of the cyanoethyl protecting group using DBU or diethylamine prior to the cleavage and deprotection steps. Similarly, loss at the 5’ terminus can be eliminated by retaining the DMT group until the oligo is fully deprotected. Fortunately, the elimination reaction is virtually non-existent in the 1,3-diol backbone since the cyclic intermediate would be a 6-membered ring which is not favored for a cyclic phosphate intermediate.
IVD customers have requested a new backbone based on a 1,3-diol that would overcome any technical or IP issues surrounding our current products. We now offer a line of products based on the serinol backbone, which have been developed in close collaboration between Glen Research and Nelson Biotechnologies. Protected Biotin Serinol Phosphoramidite and CPG are protected with a t-butylbenzoyl group on the biotin ring. This group is designed to stop any phosphoramidite reactions at this active position in biotin. This protection avoids branching when using nucleophilic activators like DCI. The protecting group is easily removed during oligonucleotide cleavage and deprotection. The BiotinLC versions are similarly protected and should be useful for the synthesis of highly sensitive biotinylated probes. 6-Fluorescein Serinol Phosphoramidite and CPG are designed to prepare oligonucleotides containing one or several 6-Fluorescein (6-FAM) residues. Amino-Modifier Serinol Phosphoramidite and CPG are used to add amino groups into one or several positions in oligonucleotides. The amino group is protected with Fmoc, which may be removed on the synthesis column prior to solid-phase conjugation to the amino groups, or which may be removed during deprotection for subsequent solution phase conjugation to the amino groups.
Combining lipoic acid and our patented serinol backbone, we now offer Dithiol Serinol Phosphoramidite and the related 3’-Dithiol Serinol CPG. This unique architecture moves the bulky dithiol away from the phosphate backbone, making it suitable for conjugation to gold surfaces. The long spacer arm of Dithiol Serinol also allows multiple consecutive incorporations of the modifier without the need for intermediate spacer phosphoramidite additions to achieve optimal stepwise coupling efficiency.
Specifications | |
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Diluent | Anhydrous Acetonitrile |
Storage | Storage: Freezer storage, -10 to -30�C, dry |
Stability | 1-2 Days |
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The table below show pack size data and, for solutions, dilution and approximate coupling based on normal priming procedures.
Catalog # | Pack Size | Grams/Pack | 0.1M Dil. (mL) | Approximate Number of Additions | |||||
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LV40 | LV200 | 40nm | 0.2μm | 1μm | 10μm | ||||
10-1998-02 | 0.25 g | 0.25 | 2.75 | 78.33 | 47 | 29.38 | 21.36 | 15.67 | 3.92 |
10-1998-90 | 100 µmol | 0.09 | 1 | 20 | 12 | 7.5 | 5.45 | 4 | 1 |
10-1998-95 | 50 µmol | 0.05 | 0.5 | 3.33 | 2 | 1.25 | 0.91 | 0.67 | 0.17 |
Catalog # | Pack Size | Grams/Pack | Dilution (mL) | Approximate Number of Additions | ||||
---|---|---|---|---|---|---|---|---|
Molarity | 50nm | 0.2μm | 1μm | 15μm | ||||
10-1998-02 | 0.25 g | 0.25 | 4.1 | 0.07 | 75.6 | 47.25 | 34.36 | 4.73 |
10-1998-90 | 100 µmol | 0.09 | 1.5 | 0.07 | 23.6 | 14.75 | 10.73 | 1.48 |
10-1998-95 | 50 µmol | 0.05 | 0.75 | 0.07 | 8.6 | 5.38 | 3.91 | 0.54 |
Glen Research提供了多种荧光团和荧光猝灭剂,可以在寡核苷酸合成过程中的5'-或3'-末端或序列内添加。所得的荧光寡核苷酸探针通常用于多种应用,例如遗传和基因组分析以及法医分析。荧光寡核苷酸探针的常见应用是FRET和分子信标探针。
生产和包装用于荧光探针设计的Glen Research产品,以确保在商业合成仪上获得最高性能。每批都附有分析报告和HPLC迹线,显示了我们质量控制测试的结果。Glen Research单体包装在行业标准的小瓶中,并经过专门清洁以消除微粒污染。