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Chemical synthesis of 2'-0-[13C methyl-rCGCGCG and 5-methyl-rCGCGCG using support-aided phosphoramidite method is presented. 2'-0-Methyl guanosine derivative was separated from its 3'-0-methyl counterpart using transient 5',3'-0-silylation with l,3-dichloro-l,l,3,3-tetraisopropyldisiloxane (Markiewicz reagent). The hexamers were obtained in a purity suitable for NMR studies.
Several methods for simple and efficient chemical synthesis of dolichyl phosphates and their an-alogues and derivatives are briefly summarized with a special emphasis on chemical modifica-tion of phosphoryl group and preparation of dolichyl phosphates labelled at the ω-end and at the γ-isoprene unit of the isoprene chain by fluorescent groups, 2-aminopyridine and 1-aminon-aphtalene residues. Additionally, data on biochemical assays with application of the compounds mentioned above are presented.
A bridged peptide with the sequence: H-Thr-Pro-Gln-Arg-Gly-Asp-Val-y-Abu-Asn- Asp-Gln-Glu-Glu-Thr-Thr-Gly-Val-Val-Ser-Thr-Pro-Leu-Ile-Arg-Asn-Gly-OH was de­signed to mimic the discontinuous epitope of the HLA-DQ molecule that might interact with CD4. The bridged peptide revealed distinct suppressory effect in the humoral im­mune response. This result supports our suggestion that the 164-172 region of the HLA-DQ molecule may enhance its interactions with coreceptors, possibly with CD4.
Our previous studies showed that the nonapeptide fragment of HLA-DQ of the sequence H-Thr-Pro-Gln-Arg-Gly-Asp-Val-Tyr-Thr-OH, located in the β164-172 loop, strongly sup­presses the humoral and cellular immune responses, while its shorter analogs, H-Arg-Gly-Asp-Val-OH, H-Arg-Gly-Asp-Val-Tyr-OH and H-Gln-Arg-Gly-Asp-Val-Tyr-OH show only a weak stimulatory activity in respect to the humoral immunological response. These fragments contain the Arg-Gly-Asp (RGD) sequence, known for its importance for cellular association phenomena. Based on the crystal structure of HLA-DR1, we also de­signed and synthesized a cyclic analog H-Cys-Arg-Gly-Asp-Val-Tyr-Cys-OH with restricted conformation, which strongly suppresses the immune response and selectively inhibits the avβ3 integrin, suggesting that the mechanism of the immunosuppressory action of the peptide is associated with inhibition of the integrin. In this paper we present the design and synthesis of the cyclodimeric peptide,L Arg-Gly-Asp-Arg-Gly-Asp, which is also known as a selective avβ3 inhibitor. The synthesized peptide strongly suppresses both the humoral and cellular immune response. The results support our hypothesis that the immunomodulatory activity of HLA-DQ fragments may be connected with their interac­tions with some particular integrins on the cell surface.
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