{"id":{"repo_id":"rockefeller","oai_identifier":"oai:digitalcommons.rockefeller.edu:student_theses_and_dissertations-1368"},"canonical_url":"https://search.dev.ndltd.org/etd/rockefeller/oai:digitalcommons.rockefeller.edu:student_theses_and_dissertations-1368","repository":{"repo_id":"rockefeller","name":"Rockefeller","base_url":"https://digitalcommons.rockefeller.edu/do/oai/"},"display":{"title":"Structure of the Chicken Neuron-Glia Cell Adhesion Molecule, Ng-CAM: Origin of the Polypeptides and Relation to the Ig Superfamily","abstract":"<p>The neuron-glia cell adhesion molecule, Ng-CAM, is a cell-surface glycoprotein expressed on neurons and Schwann cells in the chicken nervous system. It is expressed as a group of related components of ~200 kD, 135 kD, and 80 kD, which are detected at particular sites during development. Ng-CAM mediates a variety of functions that are known to be important in specific cell-cell interactions and the histogenesis of the nervous system, including neuron-neuron adhesion, neuron-glia adhesion, neurite fasciculation, and neuronal migration on glial cells. This thesis describes the characterization of cDNA that encode the entire Ng-CAM protein and the determination of the origin of the polypeptide components. An analysis of the deduced amino acid sequence reveals the presence of immunoglobulin-like domains and fibronectin-type III repeats, and establishes the relationship of Ng-CAM to other neural CAMs containing similar structures. The thesis also describes the identification of a similar protein in the embryonic chicken nervous system, the Ng-CAM-related cell adhesion molecule (Nr-CAM). Its close structural and sequence similarities to Ng-CAM indicate its probable involvement in cell adhesion, and defines a closely related subfamily of neural CAMs. cDNA libraries prepared from embryonic nervous tissue were used to isolate clones encoding Ng-CAM. These clones encode a polypeptide that includes all three known components of Ng-CAM, and hybridize to a single mRNA species (6 kb) that is restricted to nervous tissue. Single bands were detected in genomic DNA blots with Ng-CAM cDNA probes, indicating that there is a single Ng-CAM gene in chicken. Together these data indicate that the polypeptide components of Ng-CAM all arise from a single translation product, and that the two smaller poljrpeptide components (135 kD and 80 kD) are products of posttranslational cleavage. The deduced amino acid sequence of Ng-CAM predicts the presence of six immunoglobulin-like domains, five fibronectin-type III repeats, a single transmembrane domain, and a short cytoplasmic region. Ng-CAM also contains a single RGD sequence in its third fibronectin-type III repeat, which in an equivalent position in several other proteins is known to mediate a cell-binding activity. Ng-CAM is similar to other neural CAMs containing immunoglobulin-like domains and is most similar to its previously presumed equivalent in mouse, L1. However, overall the amino acid sequence of Ng-CAM is only 40% identical to L1, and within the individual domains ranges from only 15% to 66% identity. Known equivalent CAMs (e.g., N-CAM) in the two species are much more closely related (80% identity), indicating that in contrast to previous assumptions Ng-CAM and L1 may be functionally different molecules. cDNA clones encoding another protein were isolated from embryonic chicken nervous system libraries using antibodies against Ng-CAM. The new protein shares at least one polypeptide epitope with Ng-CAM, and was designated the Ng-CAM-related cell adhesion molecule, or Nr-CAM. Like Ng-CAM, it is predicted to contain six immunoglobulin-like domains, five fibronectin-type III repeats, one transmembrane segment and a small cytoplasmic domain, each of which is most similar to corresponding segments in Ng-CAM and L1. However, overall Nr-CAM shares only 40% identity to L1, and is thus not the chicken equivalent of L1. In addition, comparison of several similar Nr-CAM cDNA clones indicated that the fifth fibronectin-type III repeat (93 amino acids) and a segment between the second and third immunoglobulin-like domains (20 amino acids) may be differentially spliced in Nr-CAM mRNA; such alternative forms have not been seen for Ng-CAM and L1. The combined results indicate that Ng-CAM, Nr-CAM and L1 define a structurally related subfamily of neural CAMs. Their similarities suggest that they may perform similar binding functions in the nervous system, possibly at different times and locations during neural development.</p>","abstract_html":"&lt;p&gt;The neuron-glia cell adhesion molecule, Ng-CAM, is a cell-surface glycoprotein expressed on neurons and Schwann cells in the chicken nervous system. It is expressed as a group of related components of ~200 kD, 135 kD, and 80 kD, which are detected at particular sites during development. Ng-CAM mediates a variety of functions that are known to be important in specific cell-cell interactions and the histogenesis of the nervous system, including neuron-neuron adhesion, neuron-glia adhesion, neurite fasciculation, and neuronal migration on glial cells. This thesis describes the characterization of cDNA that encode the entire Ng-CAM protein and the determination of the origin of the polypeptide components. An analysis of the deduced amino acid sequence reveals the presence of immunoglobulin-like domains and fibronectin-type III repeats, and establishes the relationship of Ng-CAM to other neural CAMs containing similar structures. The thesis also describes the identification of a similar protein in the embryonic chicken nervous system, the Ng-CAM-related cell adhesion molecule (Nr-CAM). Its close structural and sequence similarities to Ng-CAM indicate its probable involvement in cell adhesion, and defines a closely related subfamily of neural CAMs. cDNA libraries prepared from embryonic nervous tissue were used to isolate clones encoding Ng-CAM. These clones encode a polypeptide that includes all three known components of Ng-CAM, and hybridize to a single mRNA species (6 kb) that is restricted to nervous tissue. Single bands were detected in genomic DNA blots with Ng-CAM cDNA probes, indicating that there is a single Ng-CAM gene in chicken. Together these data indicate that the polypeptide components of Ng-CAM all arise from a single translation product, and that the two smaller poljrpeptide components (135 kD and 80 kD) are products of posttranslational cleavage. The deduced amino acid sequence of Ng-CAM predicts the presence of six immunoglobulin-like domains, five fibronectin-type III repeats, a single transmembrane domain, and a short cytoplasmic region. Ng-CAM also contains a single RGD sequence in its third fibronectin-type III repeat, which in an equivalent position in several other proteins is known to mediate a cell-binding activity. Ng-CAM is similar to other neural CAMs containing immunoglobulin-like domains and is most similar to its previously presumed equivalent in mouse, L1. However, overall the amino acid sequence of Ng-CAM is only 40% identical to L1, and within the individual domains ranges from only 15% to 66% identity. Known equivalent CAMs (e.g., N-CAM) in the two species are much more closely related (80% identity), indicating that in contrast to previous assumptions Ng-CAM and L1 may be functionally different molecules. cDNA clones encoding another protein were isolated from embryonic chicken nervous system libraries using antibodies against Ng-CAM. The new protein shares at least one polypeptide epitope with Ng-CAM, and was designated the Ng-CAM-related cell adhesion molecule, or Nr-CAM. Like Ng-CAM, it is predicted to contain six immunoglobulin-like domains, five fibronectin-type III repeats, one transmembrane segment and a small cytoplasmic domain, each of which is most similar to corresponding segments in Ng-CAM and L1. However, overall Nr-CAM shares only 40% identity to L1, and is thus not the chicken equivalent of L1. In addition, comparison of several similar Nr-CAM cDNA clones indicated that the fifth fibronectin-type III repeat (93 amino acids) and a segment between the second and third immunoglobulin-like domains (20 amino acids) may be differentially spliced in Nr-CAM mRNA; such alternative forms have not been seen for Ng-CAM and L1. The combined results indicate that Ng-CAM, Nr-CAM and L1 define a structurally related subfamily of neural CAMs. Their similarities suggest that they may perform similar binding functions in the nervous system, possibly at different times and locations during neural development.&lt;/p&gt;","abstract_has_math":false,"creators":["Burgoon, Mark P"],"institution":null,"degree_name":"Doctor of Philosophy (PhD)","degree_level":"Thesis","degree_discipline":null,"degree_department":null,"school":null,"contributors":["Bruce Cunningham"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":1991,"date_issued":"1991-01-01T08:00:00Z","date_published":"1991-01-01T08:00:00Z","updated_at":"2026-07-24T04:10:47Z","subjects":["Ng-CAM","Nr-CAM","cell adhesion","neural development","immunoglobulin domains","fibronectin repeats","Life Sciences"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://digitalcommons.rockefeller.edu/student_theses_and_dissertations/362","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Bruce Cunningham"]},{"key":"dc:creator","label":"Author","values":["Burgoon, Mark P"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"thesis:degree_level","label":"Degree Level","values":["Thesis"]},{"key":"thesis:degree_name","label":"Degree Name","values":["Doctor of Philosophy (PhD)"]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["Ng-CAM","Nr-CAM","cell adhesion","neural development","immunoglobulin domains","fibronectin repeats","Life Sciences"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier","label":"Identifier","values":["https://digitalcommons.rockefeller.edu/student_theses_and_dissertations/362"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["<p>The neuron-glia cell adhesion molecule, Ng-CAM, is a cell-surface glycoprotein expressed on neurons and Schwann cells in the chicken nervous system. It is expressed as a group of related components of ~200 kD, 135 kD, and 80 kD, which are detected at particular sites during development. Ng-CAM mediates a variety of functions that are known to be important in specific cell-cell interactions and the histogenesis of the nervous system, including neuron-neuron adhesion, neuron-glia adhesion, neurite fasciculation, and neuronal migration on glial cells. This thesis describes the characterization of cDNA that encode the entire Ng-CAM protein and the determination of the origin of the polypeptide components. An analysis of the deduced amino acid sequence reveals the presence of immunoglobulin-like domains and fibronectin-type III repeats, and establishes the relationship of Ng-CAM to other neural CAMs containing similar structures. The thesis also describes the identification of a similar protein in the embryonic chicken nervous system, the Ng-CAM-related cell adhesion molecule (Nr-CAM). Its close structural and sequence similarities to Ng-CAM indicate its probable involvement in cell adhesion, and defines a closely related subfamily of neural CAMs. cDNA libraries prepared from embryonic nervous tissue were used to isolate clones encoding Ng-CAM. These clones encode a polypeptide that includes all three known components of Ng-CAM, and hybridize to a single mRNA species (6 kb) that is restricted to nervous tissue. Single bands were detected in genomic DNA blots with Ng-CAM cDNA probes, indicating that there is a single Ng-CAM gene in chicken. Together these data indicate that the polypeptide components of Ng-CAM all arise from a single translation product, and that the two smaller poljrpeptide components (135 kD and 80 kD) are products of posttranslational cleavage. The deduced amino acid sequence of Ng-CAM predicts the presence of six immunoglobulin-like domains, five fibronectin-type III repeats, a single transmembrane domain, and a short cytoplasmic region. Ng-CAM also contains a single RGD sequence in its third fibronectin-type III repeat, which in an equivalent position in several other proteins is known to mediate a cell-binding activity. Ng-CAM is similar to other neural CAMs containing immunoglobulin-like domains and is most similar to its previously presumed equivalent in mouse, L1. However, overall the amino acid sequence of Ng-CAM is only 40% identical to L1, and within the individual domains ranges from only 15% to 66% identity. Known equivalent CAMs (e.g., N-CAM) in the two species are much more closely related (80% identity), indicating that in contrast to previous assumptions Ng-CAM and L1 may be functionally different molecules. cDNA clones encoding another protein were isolated from embryonic chicken nervous system libraries using antibodies against Ng-CAM. The new protein shares at least one polypeptide epitope with Ng-CAM, and was designated the Ng-CAM-related cell adhesion molecule, or Nr-CAM. Like Ng-CAM, it is predicted to contain six immunoglobulin-like domains, five fibronectin-type III repeats, one transmembrane segment and a small cytoplasmic domain, each of which is most similar to corresponding segments in Ng-CAM and L1. However, overall Nr-CAM shares only 40% identity to L1, and is thus not the chicken equivalent of L1. In addition, comparison of several similar Nr-CAM cDNA clones indicated that the fifth fibronectin-type III repeat (93 amino acids) and a segment between the second and third immunoglobulin-like domains (20 amino acids) may be differentially spliced in Nr-CAM mRNA; such alternative forms have not been seen for Ng-CAM and L1. The combined results indicate that Ng-CAM, Nr-CAM and L1 define a structurally related subfamily of neural CAMs. Their similarities suggest that they may perform similar binding functions in the nervous system, possibly at different times and locations during neural development.</p>"]},{"key":"dc:title","label":"Title","values":["Structure of the Chicken Neuron-Glia Cell Adhesion Molecule, Ng-CAM: Origin of the Polypeptides and Relation to the Ig Superfamily"]}]}],"canonical_facts":{"dc:contributor":["Bruce Cunningham"],"dc:creator":["Burgoon, Mark P"],"dc:description.abstract":["<p>The neuron-glia cell adhesion molecule, Ng-CAM, is a cell-surface glycoprotein expressed on neurons and Schwann cells in the chicken nervous system. It is expressed as a group of related components of ~200 kD, 135 kD, and 80 kD, which are detected at particular sites during development. Ng-CAM mediates a variety of functions that are known to be important in specific cell-cell interactions and the histogenesis of the nervous system, including neuron-neuron adhesion, neuron-glia adhesion, neurite fasciculation, and neuronal migration on glial cells. This thesis describes the characterization of cDNA that encode the entire Ng-CAM protein and the determination of the origin of the polypeptide components. An analysis of the deduced amino acid sequence reveals the presence of immunoglobulin-like domains and fibronectin-type III repeats, and establishes the relationship of Ng-CAM to other neural CAMs containing similar structures. The thesis also describes the identification of a similar protein in the embryonic chicken nervous system, the Ng-CAM-related cell adhesion molecule (Nr-CAM). Its close structural and sequence similarities to Ng-CAM indicate its probable involvement in cell adhesion, and defines a closely related subfamily of neural CAMs. cDNA libraries prepared from embryonic nervous tissue were used to isolate clones encoding Ng-CAM. These clones encode a polypeptide that includes all three known components of Ng-CAM, and hybridize to a single mRNA species (6 kb) that is restricted to nervous tissue. Single bands were detected in genomic DNA blots with Ng-CAM cDNA probes, indicating that there is a single Ng-CAM gene in chicken. Together these data indicate that the polypeptide components of Ng-CAM all arise from a single translation product, and that the two smaller poljrpeptide components (135 kD and 80 kD) are products of posttranslational cleavage. The deduced amino acid sequence of Ng-CAM predicts the presence of six immunoglobulin-like domains, five fibronectin-type III repeats, a single transmembrane domain, and a short cytoplasmic region. Ng-CAM also contains a single RGD sequence in its third fibronectin-type III repeat, which in an equivalent position in several other proteins is known to mediate a cell-binding activity. Ng-CAM is similar to other neural CAMs containing immunoglobulin-like domains and is most similar to its previously presumed equivalent in mouse, L1. However, overall the amino acid sequence of Ng-CAM is only 40% identical to L1, and within the individual domains ranges from only 15% to 66% identity. Known equivalent CAMs (e.g., N-CAM) in the two species are much more closely related (80% identity), indicating that in contrast to previous assumptions Ng-CAM and L1 may be functionally different molecules. cDNA clones encoding another protein were isolated from embryonic chicken nervous system libraries using antibodies against Ng-CAM. The new protein shares at least one polypeptide epitope with Ng-CAM, and was designated the Ng-CAM-related cell adhesion molecule, or Nr-CAM. Like Ng-CAM, it is predicted to contain six immunoglobulin-like domains, five fibronectin-type III repeats, one transmembrane segment and a small cytoplasmic domain, each of which is most similar to corresponding segments in Ng-CAM and L1. However, overall Nr-CAM shares only 40% identity to L1, and is thus not the chicken equivalent of L1. In addition, comparison of several similar Nr-CAM cDNA clones indicated that the fifth fibronectin-type III repeat (93 amino acids) and a segment between the second and third immunoglobulin-like domains (20 amino acids) may be differentially spliced in Nr-CAM mRNA; such alternative forms have not been seen for Ng-CAM and L1. The combined results indicate that Ng-CAM, Nr-CAM and L1 define a structurally related subfamily of neural CAMs. Their similarities suggest that they may perform similar binding functions in the nervous system, possibly at different times and locations during neural development.</p>"],"dc:identifier":["https://digitalcommons.rockefeller.edu/student_theses_and_dissertations/362"],"dc:subject":["Ng-CAM","Nr-CAM","cell adhesion","neural development","immunoglobulin domains","fibronectin repeats","Life Sciences"],"dc:title":["Structure of the Chicken Neuron-Glia Cell Adhesion Molecule, Ng-CAM: Origin of the Polypeptides and Relation to the Ig Superfamily"],"thesis:degree_level":["Thesis"],"thesis:degree_name":["Doctor of Philosophy (PhD)"]},"updated_at":"2026-07-24T04:10:47Z"}