The expression of the human aldolase A gene is controlled by three alternative promoters. In transgenic mice, pN and pH are active in all tissues whereas pM is activated specifically in adult muscles composed mainly of fast, glycolytic fibers. To detect potential regulatory regions involved in the fast-muscle-specific activation of pM, we analyzed DNase I hypersensitivity in a 4.3-kbp fragment from the 5 ' end of the human aldolase A gene. Five hypersensitive sites were located near the transcription initiation site of each promoter in those transgenic-mouse tissues in which the corresponding promoter was active. Only one muscle-specific hyper-sensitive site was detected, mapping near pM. To functionally delimit the elements required f...
Skeletal myofibers of vertebrates acquire specialized metabolic and physiological properties as a co...
AbstractWe investigated the cis-acting sequences involved in the expression of the human aldolase C ...
Recently, a family of muscle-specific regulatory factors that includes myogenin, myoD, myf-5, and MR...
The human aldolase A tissue-specific M promoter (pM) has served as a model system for identifying pa...
The human aldolase A gene is transcribed from three different promoters, pN, pM, and pH, all of whic...
AbstractRat aldolase A gene has 2 promoters with different tissue specificities (M- and AH promoters...
The human aldolase A gene is transcribed from three different promoters, which are all clustered wit...
The fast-skeletal-muscle-fiber-specific expression of the troponin I(fast) (TnIfast) gene is driven ...
The myogenic regulatory factors, Mrf4 and Myf5, play a key role in skeletal muscle formation. An enh...
The muscle-specific transcription factors Myf5 and Mrf4 are two of the four myogenic regulatory fact...
Muscle cells have different phenotypes adapted to different usage, and can be grossly divided into f...
The enzyme fructose-1,6-bisphosphate aldolase consists of three isozymes that are expressed in a tis...
The amylase multigene family is a useful model system for the study of evolution and regulation of g...
Expression of the mouse cardiac actin gene depends on a distal enhancer (-7 kbp) which has been show...
Myf5 is the first myogenic regulatory factor to be expressed in the mouse embryo and it determines t...
Skeletal myofibers of vertebrates acquire specialized metabolic and physiological properties as a co...
AbstractWe investigated the cis-acting sequences involved in the expression of the human aldolase C ...
Recently, a family of muscle-specific regulatory factors that includes myogenin, myoD, myf-5, and MR...
The human aldolase A tissue-specific M promoter (pM) has served as a model system for identifying pa...
The human aldolase A gene is transcribed from three different promoters, pN, pM, and pH, all of whic...
AbstractRat aldolase A gene has 2 promoters with different tissue specificities (M- and AH promoters...
The human aldolase A gene is transcribed from three different promoters, which are all clustered wit...
The fast-skeletal-muscle-fiber-specific expression of the troponin I(fast) (TnIfast) gene is driven ...
The myogenic regulatory factors, Mrf4 and Myf5, play a key role in skeletal muscle formation. An enh...
The muscle-specific transcription factors Myf5 and Mrf4 are two of the four myogenic regulatory fact...
Muscle cells have different phenotypes adapted to different usage, and can be grossly divided into f...
The enzyme fructose-1,6-bisphosphate aldolase consists of three isozymes that are expressed in a tis...
The amylase multigene family is a useful model system for the study of evolution and regulation of g...
Expression of the mouse cardiac actin gene depends on a distal enhancer (-7 kbp) which has been show...
Myf5 is the first myogenic regulatory factor to be expressed in the mouse embryo and it determines t...
Skeletal myofibers of vertebrates acquire specialized metabolic and physiological properties as a co...
AbstractWe investigated the cis-acting sequences involved in the expression of the human aldolase C ...
Recently, a family of muscle-specific regulatory factors that includes myogenin, myoD, myf-5, and MR...