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N Hole

Publications and source records attributed to N Hole.

20 records · Page 2Linked to original sources

Characterization of the human trophoblast-leukocyte antigenic molecules defined by a monoclonal antibody.

The murine monoclonal antibody H316 recognizes cell surface glycoproteins shared in expression by human trophoblast and peripheral blood leukocytes. It is also strongly expressed by many human tumor cell types, including choriocarcinoma and teratocarcinoma. The H316 antigenic determinant from these different cell types is carried on two wheat germ agglutinin-reactive glycoproteins of approximately 65,000 and 55,000 m.w. The antigenicity is not dependent on N-linked glycosylation. Biochemical fractionation procedures suggest that the molecules are related to each other, are not associated through intermolecular disulfide bonds, but do exhibit intramolecular disulfide interactions. These glycoproteins demonstrate m.w. heterogeneity between different cell lines and individual trophoblast membrane preparations. Such properties suggest that H316 molecules may be representative of TLX antigens (trophoblast-leukocyte common antigens), which have been suggested to influence maternofetal immunogenetic interactions.

Antibodies, Monoclonal↗

Demonstration of the clonality and specificity of an auto-antibody response to a suppressed immunoglobulin allotype of the rabbit kappa chain b locus.

A regulatory idiotypic network is proposed to control allotype expression in normal rabbits. We have used suppression of the kappa chain b6 allotype in an attempt to restrict the number of regulatory idiotypes involved in an induced auto anti-allotype response. These auto anti-b6 antibodies were examined by an agarose imprint immuno-fixation IEF technique using iodinated allotype-bearing IgG. All totally b6-suppressed rabbits produced a clonally complex response which was generally spectrotypically unique - thus contradicting previous claims of a dominant common idiotypic pattern. The compensating light chains thus have available as many regulatory V genes as does the kappa 1 light chain. However, the b6/b6 homozygotes breaking b6 suppression produce an auto anti-b6 antibody which does not interact with their "escaping" molecules and which is clonally restricted. We propose a regulatory mechanism limiting the V genes utilised to produce the autoantibody, the latter then allowing only molecules bearing non-interactive allotopes to "escape" suppression.

Animals↗