Try a new search

Format these results:

Searched for:

in-biosketch:yes

person:tomicm01

Total Results:

185


REGULATION OF HUMAN K=3 KERATIN GENE-EXPRESSION - IDENTIFICATION OF PROMOTER, ENHANCER AND SILENCER SEQUENCES [Meeting Abstract]

Epstein, H; Jiang, CK; Tomic, M; Freedberg, IM; Blumenberg, M
ISI:A1990CW00400149
ISSN: 0022-202x
CID: 31995

CHARACTERIZATION OF THE TRANSCRIPTION SPECIFICITY OF EPIDERMAL KERATIN GENE PROMOTERS [Meeting Abstract]

Freedberg, IM; Jiang, CK; Tomic, M; Epstein, H; Blumenberg, M
ISI:A1990CW00400171
ISSN: 0022-202x
CID: 31997

AN ENHANCER CONTROLS HUMAN K-NUMBER-14 KERATIN GENE-EXPRESSION [Meeting Abstract]

Jiang, CK; Tomic, M; Epstein, H; Freedberg, IM; Blumenberg, M
ISI:A1990CW00400249
ISSN: 0022-202x
CID: 31998

A rapid and simple method for introducing specific mutations into any position of DNA leaving all other positions unaltered

Tomic M; Sunjevaric I; Savtchenko ES; Blumenberg M
PMCID:330562
PMID: 2158085
ISSN: 0305-1048
CID: 17109

Epithelial-specific keratin gene expression: identification of a 300 base-pair controlling segment

Jiang CK; Epstein HS; Tomic M; Freedberg IM; Blumenberg M
To elucidate the elements required for regulation of keratin expression in epidermis, we have linked a short, 300 base pair segment, corresponding to the promoter region of a human K#14 gene, to the chloramphenicol-acetyl-transferase gene. This construct was introduced into various mammalian cell lines and primary cultures via Ca3(PO4)2 precipitation. The 300 base pair segment from the keratin gene promoter region was active in all epithelial cells studied including transformed, simple epithelial cells such as HeLa and ME-180, cell lines derived from stratified epithelium, such as SCC-12, as well as primary cultures of epithelial cells. The construct was inactive in all non-epithelial cells tested including fibroblasts and melanocytes. The segment does not function as a silencer in nonepithelial cells but it can function as an enhancer in epithelial cells. Using the polymerase chain reaction we have constructed a series of deletions of the promoter and have localized an essential function within a 40 bp sequence. We conclude that we have identified the keratin gene promoter that is sufficient to confer epithelial-specific expression
PMCID:330260
PMID: 1691483
ISSN: 0305-1048
CID: 16374