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Biomedical subjects

I Pohl

Publications and source records attributed to I Pohl.

3 recordsLinked to original sources

A versatile phage lambda expression vector system for cloning in Escherichia coli.

By integrating fragments from the expression plasmids pJK2 and pJK4 into a derivative of the bacteriophage lambda, we constructed the phage expression vectors lambda JK2 and lambda JK4, which allow efficient cloning of genomic or cDNA either into the 5' end or the 3' end of the lacZ gene of Escherichia coli. Expression of barrier-free DNA in phase may lead to fusion proteins consisting of active beta-galactosidase (beta Gal) plus an additional polypeptide encoded by the inserted DNA. Analysis of distinct recombinant clones is quick and easy, due to the reversible integration of the plasmid into the genome. As an example, we constructed an expression library of genomic Plasmodium falciparum DNA in lambda JK2. We polymerised (amplified) and expressed a synthetic DNA fragment, which codes for a potential antigenic determinant of the 11-1 gene of Plasmodium falciparum as a fusion to the N terminus of active beta Gal. We demonstrate that such chimeric molecules can be affinity-purified and that polypeptides can be separated from the beta Gal part by cleavage with the protease factor Xa.

Amino Acid Sequence

Bone volume and mineral density of iliac crest spongiosa in uremia.

Bone mass and bone mineral content were measured in non-dialyzed and dialyzed uremic patients. Bone mass, measured by micromorphometry and a gas displacement method, was higher in uremic than in age and sex matched control subjects (micromorphometry-U:25.8 +/- 8.24%; Co:15.6 +/- 4.38; gas displacement-U:211 +/- 66 mm3/cm3; Co:191 +/- 45). In hemodialyzed patients, bone mass was lower the longer the patients had been on dialysis (r = 0.38; P 0.05). Bone mineral content (specific weight) was diminished in uremia (1.82 +/- 0.095 g/ml; controls 1.854 +/- 0.0173). In hemodialyzed patients, specific weight was higher, as was Ca content of bone assessed by neutron activation analysis. It is concluded, that negative Ca balance was the major cause of bone loss and that bone loss is thus preventable.

Bone Resorption