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A Steinkasserer

Publications and source records attributed to A Steinkasserer.

58 records · Page 4Linked to original sources

Assignment of apolipoprotein H (APOH: beta-2-glycoprotein I) to human chromosome 17q23----qter; determination of the major expression site.

Human apolipoprotein H (APOH) is associated with lipoprotein present in plasma. It has been shown that APOH has structural similarities with the regulation of complement activation (RCA) protein superfamily and is involved in phospholipid binding interactions on platelets and as an autoantigen in complex with anionic phospholipids. Nevertheless, additional functional studies are necessary to establish the physiological role of APOH. By hybridizing a cDNA probe for APOH to a panel of somatic cell hybrids, we show that the structural locus for this protein maps to 17q23----qter and is therefore not part of the RCA cluster on chromosome 1. The site of biosynthesis for APOH was established by Northern blot analysis. Hybridization of the APOH cDNA probe to total liver RNA identified a transcript of approximately 1.5 kb.

Apolipoproteins↗

Complete nucleotide and deduced amino acid sequence of human beta 2-glycoprotein I.

The nucleotide and complete amino acid sequence for the human beta 2-glycoprotein I (beta 2I) was derived by sequencing the cDNA clone pB2I-1. In addition to the 326 amino acid residues of the mature protein this clone codes for a putative leader peptide and contains sequence representing 5' and 3' untranslated regions. When this amino acid sequence was compared with the previously published primary sequence, three major amino acid substitutions were found, two involving cysteine residues. These substitutions lead to a new alignment of the complement control protein (CCP) repeats present in beta 2I and a prediction of the complete disulphide bond organization. Northern-blot analysis indicates that hepatocytes are a major site of biosynthesis for this protein. A transcription signal of about 1.5 kb was detected by using RNA from HepG2 cells.

Amino Acid Sequence↗

Heterogeneity of human serum amyloid A protein. Five different variants from one individual demonstrated by cDNA sequence analysis.

Serum amyloid A (SAA), a chemically polymorphic protein, is the most sensitive marker protein of the acute phase and the precursor of reactive amyloidosis, which is characterized by deposits of amyloid A protein (AA). We investigated the variability of the SAA gene family in one individual by sequencing 11 SAA-specific clones from an acute-phase-liver cDNA library. At least five different SAA variants were deduced from six different cDNAs. The 3' untranslated gene segments fall into two groups, based on nucleotide sequence and variability in length. Various nucleotide and amino acid substitutions were found predominantly in the 3' portion. Some of these substitutions are unique and increase the number of SAA variants in one individual to at least five. Moreover, genomic DNA of four individuals was examined by analysis of restriction-fragment length polymorphism. Besides two conserved strongly labelled bands, additional polymorphic bands were observed, indicating isotypic and/or allotypic SAA variations. Finally, three different mRNA species were detected by Northern-blot analysis, a finding that might be of relevance for the stability of SAA transcripts.

Amino Acid Sequence↗