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K Stefansson

Publications and source records attributed to K Stefansson.

At least 55 records · Page 3Linked to original sources

SAG: a Schwann cell membrane glycoprotein.

We report on characterization of a 170,000 Da glycoprotein found exclusively in the PNS. We refer to this protein as the Schwann cell membrane glycoprotein (SAG). SAG contains the HNK-1 carbohydrate, which is considered by some to be a marker of adhesion molecules. Its N-terminal sequence is not similar to previously known polypeptide sequences. SAG is found exclusively in the PNS, is present in rat sciatic nerve prior to myelination, and is in both myelinating and nonmyelinating Schwann cells. Tumors of Schwann cell lineage express SAG where axons are present (neurofibromas) but do not in the absence of axons (schwannomas). Schwannoma cells in culture do not express SAG even when exposed to forskolin, an activator of adenylate cyclase. However, schwannoma cells grown in the presence of a neuronal cell line (PC12) express SAG.

Amino Acid Sequence↗

Structure of the human hexabrachion (tenascin) gene.

The structure of the gene encoding human hexabrachion (tenascin) has been determined from overlapping clones isolated from a human genomic bacteriophage library. The genomic inserts were characterized by restriction mapping, Southern blot analysis, PCR, and DNA sequencing. The coding region of the hexabrachion gene spans approximately 80 kilobases of DNA and consists of 27 exons separated by 26 introns. The exon-intron structure supports a hypothesis based on the cDNA sequence that the hexabrachion gene is an assembly of DNA modules that are also found elsewhere in the genome. Single exons may encode a module, a portion of a module, or a group of modules. The 15 type III units similar to those found in fibronectin are each encoded either by a single exon or by two exons interrupted by an intron. All type III units known to be spliced out of the smaller forms of the protein are encoded by one exon. The fibrinogen-like domain of 210 amino acids is encoded by five exons. The 14.5 epidermal growth factor-like repeats are all encoded by a single exon.

Amino Acid Sequence↗

The complete cDNA sequence of human hexabrachion (Tenascin). A multidomain protein containing unique epidermal growth factor repeats.

Hexabrachion (Tenascin) is a large glycoprotein that appears in extracellular matrices as a disulfide-linked multimer. It is synthesized in an ordered fashion at particular sites during development, is made in large amounts by certain tumors, and is found in restricted tissue locations in the adult. In this report, we describe the sequence of a full length cDNA of human hexabrachion. The encoded protein contains a total of 2203 amino acids and is a linear array of discrete reiterated domains. At the 5' end are encoded hydrophobic residues and 8 flanking cysteines predicted to be responsible for assembly of hexabrachion polypeptides into a radially arranged, six-armed complex. Following this region are 14 1/2 contiguous 31-amino acid epidermal growth factor-like repeats that have a unique structure with respect to the known examples of this type of domain. Immediately adjacent to these repeats lie 15 uninterrupted segments of approximately 90 amino acids which are similar to the Type III units found in fibronectin. At the carboxyl terminus of the protein is a 210-amino acid domain that is similar to fibrinogen. The domain structure of this protein is consistent with the potential for interaction with multiple ligands and for roles in cell adhesion and/or signaling.

Amino Acid Sequence↗

Experimental allergic neuritis in the SJL/J mouse: dysfunction of peripheral nerve without clinical signs.

Experimental allergic neuritis (EAN) was studied in the SJL/J mouse and compared to EAN in the Lewis rat. The Lewis rat developed hind limb weakness and weight loss while the SJL/J mouse had no discernible clinical abnormalities. The SJL/J mouse, however, suffered subclinical damage to peripheral nerve (PN) myelin. Both species reproducibly developed electrophysiologic dysfunction of PN and histopathology confined to the peripheral nervous system (PNS). Understanding of autoimmune demyelination in the central nervous system was greatly enhanced by the development of experimental allergic encephalomyelitis in the SJL/J mouse. We believe that EAN in the SJL/J mouse could lead to a similar increase in our understanding of autoimmune demyelination in the PNS.

Action Potentials↗

Chromosomal localization of the human hexabrachion (tenascin) gene and evidence for recent reduplication within the gene.

Using analysis of rodent-human somatic cell hybrids as well as in situ hybridization of hexabrachion cDNA probes to normal human metaphase chromosomes, we have localized the human hexabrachion gene to chromosome 9, bands q32-q34. We also put forward the hypothesis that there has been a recent reduplication of a small segment of the human hexabrachion gene. We support this hypothesis by comparison of codon usage in this segment of the gene to codon usage in the remainder of the gene. This hypothesis is also supported by comparison of the sequence of human hexabrachion to that of the chicken hexabrachion. In addition, the latter comparison shows that the reduplication most likely occurred after the divergence of mammalian and avian species.

Amino Acid Sequence↗

The oligodendrocyte-myelin glycoprotein belongs to a distinct family of proteins and contains the HNK-1 carbohydrate.

The complete primary structure of the human oligodendrocyte-myelin glycoprotein (OMgp), a glycophospholipid-linked membrane protein of oligodendrocytes and central nervous system myelin, has been determined. The deduced amino acid sequence predicts a polypeptide of 433 amino acids which includes a 17-amino acid leader sequence. OMgp consists of four domains: (a) a short cysteine-rich motif at the NH2 terminus; (b) a series of tandem leucine-rich repeats (LRs) present in several other proteins where they may play roles in adhesion; (c) a serine/threonine-rich region that contains probable attachment sites for O-linked carbohydrates; and (d) a hydrophobic COOH-terminal segment that is likely to be cleaved concomitant with the attachment of lipid during biosynthesis of OMgp. OMgp shares the first three of its four domains with the platelet glycoprotein Ib, which is responsible for the initial adhesion of platelets to the exposed subendothelium during hemostasis. Together with glycoprotein Ib and several other proteins, OMgp belongs to a family of proteins that contain both an NH2-terminal cysteine-rich motif and an adjacent series of LRs. In addition, we report that a subpopulation of OMgp molecules contains the HNK-1 carbohydrate, which has been shown to mediate interactions among cells in the central nervous system.

Amino Acid Sequence↗

Structure and chromosomal localization of the gene for the oligodendrocyte-myelin glycoprotein.

Utilizing a cDNA clone encoding the oligodendrocyte-myelin glycoprotein (OMgp) to screen a human genomic DNA library, we have obtained a clone that contains the OMgp gene. The genomic clone was restriction mapped and the OMgp gene and its 5' and 3' flanking regions were sequenced. A single intron is found in the 5' untranslated region of the gene, while the coding region is uninterrupted by an intron. This placement of a single intron in the OMgp gene is identical to that of the gene for the alpha-chain of platelet glycoprotein Ib, which, along with OMgp, belongs to a family of proteins sharing two distinct structural domains: an NH2-terminal cysteine-rich domain and an adjacent domain of tandem leucine-rich repeats. Hence, it is possible that this family of proteins is not only related in terms of primary structure, but also through similar gene structure. Sequence comparison of the 5' and 3' flanking regions did not reveal striking similarities to other DNA sequences, and no obvious promoter elements were noted. By hybridization of the genomic clone to metaphase cells, we have localized the human OMgp gene to chromosome 17 bands q11-12, a region to which the neurofibromatosis type 1 gene has been previously mapped.

Amino Acid Sequence↗

Patients with myasthenia gravis and thymoma have in their sera IgG autoantibodies against titin.

Patients with myasthenia gravis (MG) and thymoma have in their sera antibodies which react with non-receptor antigens from striated muscle. The purpose of this investigation was to characterize the antigen(s). Polypeptides in homogenates from rat skeletal muscle were separated by SDS-PAGE and trans-blotted to nitrocellulose. Sera from six patients with MG and thymoma stained a large (molecular weight greater than 500 kD) polypeptide, while no staining was observed with sera from 20 non-thymoma MG patients. Titin is one of the large (greater than 500 kD) polypeptides of striated muscle and the antibody containing MG sera have antibodies that bind to titin in a preparation of myofibrillary proteins from rabbit skeletal muscle. The staining pattern is identical to that obtained with antiserum to titin, showing that the antigen has the same electrophoretic mobility as titin. Antibodies from the sera of the patients with MG and thymoma, affinity-purified on the large polypeptide, reacted with skeletal muscle sections in a cross-striational pattern, near the A/I band junction but within the I band, corresponding to the localization of one of the epitopes of titin. Our findings therefore indicate that the muscle antibodies found in the sera from some MG patients with thymoma are directed against titin.

Animals↗

Binding of hexabrachions to heparin and DNA.

Hexabrachions are extracellular proteins expressed in certain tissues and at specific points in development. cDNA sequencing has revealed that they contain a region of repeats that are similar to the type III homology units of fibronectin. The corresponding region of fibronectin contains heparin- and DNA-binding domains. We have compared the heparin and DNA binding of hexabrachion secreted by the human glioblastoma cell line U87MG to that of fibronectin. Both proteins bound to heparin-agarose in low salt (0.05 M NaCl) buffers. Using linear salt gradients, hexabrachion was eluted from heparin prior to fibronectin. The addition of 5 mM CaCl2 decreased the affinity of both proteins for heparin, but it had a greater effect upon the binding of fibronectin. Free heparin but not chondroitin sulfate inhibited the binding of both proteins to heparin-agarose. In addition, hexabrachion bound to DNA as fibronectin does, and this binding could be inhibited by heparin but not by chondroitin sulfate. Unlike fibronectin, hexabrachion did not bind to gelatin when samples containing both proteins were passed over gelatin-agarose, also indicating that there was no interaction between hexabrachion and fibronectin. In contrast to hexabrachion isolated from brain, the protein secreted by the human glioblastoma cell line U87MG does not bear the HNK-1 epitope which is on a carbohydrate that can mediate interactions between cells.

Calcium↗

An alternatively spliced region of the human hexabrachion contains a repeat of potential N-glycosylation sites.

We have cloned and sequenced two cDNA molecules that code for parts of two forms of human hexabrachion. The smaller clone has a sequence that corresponds to the previously published sequence of a cDNA clone coding for a part of chicken hexabrachion [Jones, F. S., Burgoon, M. P., Hoffman, S., Crossin, K. L., Cunningham, B. A. & Edelman, G. M. (1988) Proc. Natl. Acad. Sci. USA 85, 2186-2190]. It has eight consecutive domains similar to the type III homology units from fibronectin, several epidermal growth factor repeats, and a domain similar to the beta and gamma chains of fibrinogen. The larger clone has 5' and 3' ends that are identical to the smaller clone but also has an alternatively spliced 1.9-kilobase internal segment. The unique segment contains remarkable repeats of potential glycosylation sites and an additional seven type III homology units.

Amino Acid Sequence↗

Monoclonal antibodies and lectins as probes for investigation of the cell biology of human trabecular meshwork: a preliminary report.

Two classes of ligand-binding molecules, (1) monoclonal antibodies (MABs) and (2) lectins, were used as probes to investigate the cell biology of human trabecular cells. We raised MABs by using human trabecular meshwork as the immunogen. One MAB (KAa25D7) consistently recognized two polypeptides with molecular weights of approximately 42 and 49 kilodaltons. The former comigrated with actin and the latter was shown by fractionation and extraction studies to be a macromolecular complex. Four lectins (wheat germ agglutinin, concanavalin A, Phaseolus vulgaris leukoagglutinin I, and Ulex europaeus agglutinin I) were used to identify the glycosylated polypeptides in human trabecular meshwork on Western blots. Compared to normal age-matched controls, there was a significant decrease in binding of the lectins to most polypeptides of the trabecular meshwork samples that were obtained from 4 eyes of 2 patients with primary open-angle glaucoma. Our preliminary studies show that lectins applied to Western blots and MABs are useful methods to probe the cell biology of human trabecular meshwork in health and disease.

Adult↗

A phosphatidylinositol-linked peanut agglutinin-binding glycoprotein in central nervous system myelin and on oligodendrocytes.

Here we report the isolation and initial biochemical characterization of a 120-kD peanut agglutinin-binding glycoprotein from the adult human central nervous system (CNS), which is anchored to membranes through a phosphatidylinositol linkage. Myelin incubated with phosphatidylinositol-specific phospholipase C released the protein as a soluble polypeptide of 105 kD, which was isolated with peanut agglutinin-agarose affinity chromatography. The protein was found to be highly glycosylated. The protein appears to be confined to the CNS, where its developmental expression is region specific and parallels myelination. It is in greater quantity in white matter than in gray matter and it is in isolated human CNS myelin. Furthermore, ovine oligodendrocytes in culture contain the protein on their surfaces and release it into the supernatant as a soluble 105-kD form. We call this protein the oligodendrocyte-myelin protein.

Amino Acid Sequence↗