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122


Structure of the mouse glial fibrillary acidic protein gene: implications for the evolution of the intermediate filament multigene family

Balcarek JM; Cowan NJ
We report the complete sequence of the gene encoding mouse glial fibrillary acidic protein (GFAP), the intermediate filament (IF) protein specific to astrocytes. The 9.8 kb gene includes nine exons separated by introns ranging in size from 0.2 to 2.5 kb. A comparison of the organization of the GFAP gene with that of genes encoding other IF proteins reveals that the structure of IF genes is highly conserved in spite of considerable divergence at the amino acid level. Thus, most of the evolutionary events leading to the placement of introns in IF genes must have occurred prior to the duplication and subsequent divergence of IF genes from a presumptive common ancestral sequence. The conserved gene organization is unrelated to structural features of IF proteins. A curious feature of the GFAP gene is the large number of repeated sequences found in the introns. Six tracts of reiterated di- or trinucleotides are present, plus tandem repeats of two different novel sequences. One repeat is unique to the GFAP gene; the other occurs elsewhere in the mouse genome, although at relatively low frequency
PMCID:321888
PMID: 2994002
ISSN: 0305-1048
CID: 17152

Three expressed sequences within the human beta-tubulin multigene family each define a distinct isotype

Lewis SA; Gilmartin ME; Hall JL; Cowan NJ
This paper describes the isolation and complete sequence of a novel expressed human beta-tubulin gene (beta 2). The sequence is compared with that of two other expressed human beta-tubulin genes (M40 and 5 beta). All are encoded by four exons. Though the boundaries of each exon are absolutely conserved among the three genes, the intervening sequences differ considerably in size and sequence content. Two of the genes (M40 and 5 beta) contain one (M40) or ten (5 beta) members of the middle repetitive Alu family sequences within one of their intervening sequences. Comparison of the amino acid sequences encoded by each gene reveals a high level of homology overall, though there is significant divergence between the carboxy termini of two of the genes. The pattern of expression of each beta-tubulin gene has been studied in several different human cell lines using unique non-crosshybridizing probes derived from the 3' untranslated regions. Two of the genes, M40 and beta 2, are expressed at varying levels in all of the cell lines examined, though the level of expression of one of these genes parallels the other in most cases. The third gene, 5 beta, is detectably expressed only in cells of neural origin. Thus, distinct human beta-tubulin isotypes are encoded by genes whose exon size and number has been conserved evolutionarily, but whose pattern of expression may be regulated either co-ordinately or uniquely. Of the approximately 15 sequences contained in the human beta-tubulin multigene family, nine have now been sequenced fully. The overall composition of the multigene family and the evolutionary relationships among its various members are discussed
PMID: 3999141
ISSN: 0022-2836
CID: 17153

Genetics, evolution, and expression of the 68,000-mol-wt neurofilament protein: isolation of a cloned cDNA probe

Lewis SA; Cowan NJ
A 1.2-kilobase (kb) cDNA clone (NF68) encoding the mouse 68,000-mol-wt neurofilament protein is described. The clone was isolated from a mouse brain cDNA library by low-stringency cross-hybridization with a cDNA probe encoding mouse glial fibrillary acidic protein (Lewis et al., 1984, Proc. Natl. Acad. Sci. USA., 81:2743-2746). The identity of NF68 was established by hybrid selection using mouse brain polyA+ mRNA, and cell-free translation of the selected mRNA species. The cell-free translation product co-migrated with authentic 68,000-mol-wt neurofilament protein on an SDS/polyacrylamide gel, and was immunoprecipitable with a monospecific rabbit anti-bovine neurofilament antiserum. In addition, DNA sequence analysis of NF68 showed 90% homology at the amino acid level compared with the sequence of the porcine 68,000-mol-wt neurofilament protein. At high stringency, NF68 detects a single genomic sequence encoding the mouse 68,000-mol-wt neurofilament protein. Two mRNA species of 2.5 kb and 4.0 kb are transcribed from the single gene in mouse brain. The level of expression of these mRNAs remains almost constant in postnatal mouse brains of all ages and, indeed, in the adult. At reduced stringency, NF68 detects a number of mRNAs that are expressed in mouse brain, one of which encodes the 150,000-mol-wt neurofilament protein. The NF68 probe cross-hybridizes at high stringency with genomic sequences in species as diverse as human, chicken, and (weakly) frog, but not with DNA from Drosophila or sea urchin
PMCID:2113506
PMID: 3919033
ISSN: 0021-9525
CID: 17154

Structural features and restricted expression of a human alpha-tubulin gene

Hall JL; Cowan NJ
The nucleotide sequence of a human alpha-tubulin gene (b alpha 1) is described. This gene is extensively homologous to a rat alpha-tubulin gene in its coding regions, 3'-untranslated region and, indeed, in segments of its largest intron. However, with the exception of three short conserved blocks of homology, the 5' flanking regions of the rat and human genes are unrelated. Hence, these genes each encoding an identical protein are transcribed under the influence of divergent promoters. Blot analyses using RNA from a variety of transformed cells derived from different tissues indicate that expression of the human alpha-tubulin gene is restricted to cells of neurological origin. Among neurological cell types b alpha 1 expression is further restricted to adherent cells that are morphologically differentiated. The data presented suggest that the b alpha 1 gene encodes a prominent neuronal and glial alpha-tubulin and that b alpha 1 expression is a function of the differentiated state of these cells
PMCID:340985
PMID: 3839072
ISSN: 0305-1048
CID: 17155

Structural implications of a cDNA clone encoding mouse glial fibrillary acidic protein

Cowan NJ; Lewis SA; Balcarek JM; Krek V; Shelanski M
PMID: 3866511
ISSN: 0077-8923
CID: 17156

THE PHONOLOGICAL AND METAPHONOLOGICAL REPRESENTATION OF SPEECH - EVIDENCE FROM FLUENT BACKWARD TALKERS

COWAN, N; BRAINE, MDS; LEAVITT, LA
ISI:A1985AVG0400004
ISSN: 0749-596x
CID: 98566

Sequence of an expressed human beta-tubulin gene containing ten Alu family members

Lee MG; Loomis C; Cowan NJ
The complete sequence of a functionally expressed human beta-tubulin gene (5 beta) is presented. The amino acid sequence encoded by this gene constitutes a distinct isotype, differing from a previously described human beta-tubulin sequence at 21 positions throughout the polypeptide chain. The beta-tubulin coding sequence in 5 beta is interrupted by three intervening sequences of 1014, 117 and 4826 nucleotides. The largest of these contains ten members of the Alu family of middle repetitive sequences. Together, these regions account for sixty percent of this intervening sequence. Two of the Alu elements are juxtaposed head to tail, and share the same flanking direct repeat. The ten Alu sequences are substantially divergent, both from each other and from an Alu consensus sequence, and several contain deletions of up to half the entire sequence
PMCID:320034
PMID: 6462917
ISSN: 0305-1048
CID: 17157

Sequence of a cDNA clone encoding mouse glial fibrillary acidic protein: structural conservation of intermediate filaments

Lewis SA; Balcarek JM; Krek V; Shelanski M; Cowan NJ
A clone encoding mouse glial fibrillary acidic protein (GFAP) was isolated from a cDNA library constructed so as to express the cloned sequences. The library was screened using a GFAP-specific polyclonal antiserum; a single bacterial colony expressing GFAP was identified. The complete sequence of the cDNA insert in this clone is presented, encompassing 2.5 kilobases and specifying greater than 97% of the GFAP amino acid sequence. The clone includes a long (1.4-kilobase) 3' untranslated region. Within the coding region, the data show extensive homology with other intermediate filament proteins, particularly in those regions predicted to be alpha-helical. RNA blot transfer experiments using the cloned GFAP cDNA probe revealed a single GFAP mRNA species of 2.7 kilobases in mouse brain. Southern blot analysis indicates the existence of at most two genes encoding GFAP in the mouse genome. The mouse GFAP probe cross-hybridizes weakly at high stringency with genomic DNA from diverse eukaryotic species
PMCID:345146
PMID: 6585825
ISSN: 0027-8424
CID: 17158

Tubulin genes and the diversity of microtubule function

Cowan NJ
PMID: 6400775
ISSN: 0265-0738
CID: 17159

SALIENT CHILDHOOD MEMORIES

COWAN, N; DAVIDSON, G
ISI:A1984TT57400008
ISSN: 0022-1325
CID: 98589