PubMed HealthSearch

Biomedical subjects

W Kirchhoff

Publications and source records attributed to W Kirchhoff.

At least 19 recordsLinked to original sources

Conformational transitions of synthetic DNA sequences with inserted bases, related to the dodecamer d(CGCGAATTCGCG).

Conformational transitions for a series of imperfect palindromes related to the dodecamer d(CGCGAATTCGCG) have been investigated. These sequences are: two isomeric 13-mers - d(CGCAGAATTCGCG) (13-merI) and d(CGCGAATTACGCG) (13-merII), 17-mer d(CGCGCGAATTACGCGCG) and 15-mer d(CGCGAAATTTACGCG). Insertion of a single adenine nucleotide prevents these sequences from being self-complementary. Analysis of thermodynamic parameters derived from the melting profiles together with other data at higher concentrations (NMR and calorimetry) indicates that the insertion of the additional nucleotide which lacks a complement in the opposite strand does not change the enthalpy of the duplex formation, but does alter the number of stable nucleation configurations. The relative position of the insertion within the self-complementary sequence determines the equilibrium between the duplex form and the single-stranded hairpin loop. C-G segments separated by the insertion from the rest of the molecule can undergo an independent conformational transition at high salt concentration, probably to the Z form.

Base Sequence

No direct activation of fluid phase C3 by lymphokines.

Supernatants of stimulated (PPD or Con A) or unstimulated guinea pig lymph node cell cultures in serum-free medium were fractionated on Sephadex G 75. The fractions were tested for C3-consuming activities in a hemolytical assay. No C3 consumption could be detected in any fraction (MW range 80,000 to 10,000). The same result was obtained by extending the fractionation range using Sephadex G 200. A lytic activity with a molecular weight of appr. 225,000 which lysed EAC 14 cells in the presence of C2, 5, 6, 7, 8, 9 was attributed to serum C3 contaminating the cultures. It was determined that C3 is not produced in significant amounts by lymphocyte cultures.

Animals