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At least 19 recordsLinked to original sources

A Versatile Disulfide-Containing Solid-Support Strategy for 3'-Modifiers in Oligonucleotides: Introducing Modular Tandem Oligonucleotide Synthesis.

Chemical modifications of oligonucleotides are routinely employed to enhance their functional properties. Amino-modifiers serve as versatile chemical handles for postsynthetic (bio)conjugation, nucleic acid immobilization on solid supports, and investigations into nonenzymatic genome replication relevant to the origins of life, to name a few. Here, we report a cost-effective, disulfide-containing solid-support linkage that enables the on-column synthesis of nucleic acids with 3'-amino or 3'-phosphate modifications. The orthogonality of this solid-support linker facilitates an on-column protecting group strategy, enabling the synthesis of DNA and RNA containing 3'-amino-2',3'-dideoxyribosides from commercial unprotected mononucleosides. Additionally, we present an on-column deprotection protocol for DNA and RNA, prior to cleavage from the solid support, eliminating the precipitation step typically required in conventional RNA workflows, leading to higher recovery for certain strands. Expanding on our previous work, we introduce a versatile modular tandem oligonucleotide synthesis (mTOS) approach, allowing selective release of downstream strands from the one directly bound to the solid-support via the disulfide-containing linker. Together, these advances in solid-support design and oligonucleotide synthesis unlock new opportunities in bioconjugation, biotechnology, and the study of prebiotic replication mechanisms, broadening the utility of chemically modified nucleic acids across research disciplines.

Disulfides

Basic and applied research at the TRIUMF meson factory.

The TRIUMF 520 MeV H- cyclotron produces intense beams of protons, pions and muons supporting basic research in nuclear, particle and solid-state physics, nuclear chemistry and biomedicine, and applied research in electromagnetic breeding of nuclear fuel, proton radiography, radioisotope production and cancer treatment.

Animals

An approach to the targeted attachment of peptides and proteins to solid supports.

A novel approach to affinity columns is described that is based on the high avidity of biotinylated molecules for avidin attached to solid supports. Biocytin amide [Nepsilon-(+)-biotinyllysine amide] was coupled to the COOH-terminal carboxyl group of corticotropin(1-24) [ACTH(1-24)] to form [biocytin25]ACTH(1-25) amide. The ability of this peptide to stimulate steroidogenesis of bovine adrenocortical cells was within experimental error identical to that of ACTH(1-24). The peptide also binds to avidin and avidin-Sepharose, forming stable complexes. Thus, with biotin as the anchor, the adrenocorticotropically active segment of the ACTH molecule was attached to a solid support in a targeted manner. The general applicability of this principle for the attachment of peptides and proteins to solid supports is discussed.

Adrenocorticotropic Hormone

Formation of a thio analog of noracronine.

Acronine was heated with tetraphosphorus decasulfide in benzene to give a mixture of products, the major component (A) being identified tentatively as an unstable product derived from four molecules of noracronine with one molecule of tetraphosphorus decasulfide. Treatment of Compound A with various solvents and heat converted it into a maroon solid (B), which was shown to be 7-thionoracronine.

Acronine

QSAR in cancer chemotherapy.

Interest in the formulation of quantitative structure-activity relationships (QSAR) for antitumor drugs has begun to develop in the past decade. The work in this area has been reviewed briefly, using as examples studies on nitrosoureas, aniline mustards, and aryl triazenes. A salient conclusion from this analysis is that the present drugs in clinical use are more hydrophilic than one might expect. The reason for this may be that they have been developed using leukemia as the test system which may in part account for the fact that while the currently used drugs are effective against leukemia, they are not effective in general against solid tumors.

Aniline Mustard

An improved method for the covalent attachment of glycolipids to solid supports and macromolecules.

A simplified method is presented for the oxidation of the olefinic bond of the sphingosine moiety of glycosphingolipids to a carboxyl group. Coupling of such "glycolipid acids" to glass beads, agarose gels, proteins, and polyacrylic hydrazide polymers is described. Solid supports and macromolecules that have been derivatized in this fashion are useful reagents for a variety of studies in cell biology and immunology.

Animals