HMGA1 and HMGA2 are chromatin architectural proteins that do not have transcriptional activity per se, but are able to modify chromatin structure by interacting with the transcriptional machinery and thus negatively or positively regulate the transcription of several genes. They have been extensively studied in cancer where they are often found to be overexpressed but their functions under physiologic conditions have still not been completely addressed. Hmga1 and Hmga2 are expressed during the early stages of mouse development, whereas they are not detectable in most adult tissues. Hmga overexpression or knockout studies in mouse have pointed to a key function in the development of the embryo and of various tissues. HMGA proteins are expres...
HMGA1 proteins belong to a family of nonhistone chromatin proteins able to bind DNA in AT-rich regio...
AbstractThe human high-mobility group protein A2 (HMGA2) protein is an architectural transcription f...
Induced pluripotent stem cells (iPSCs) are rapidly evolving into an important research tool due to t...
HMGA1 and HMGA2 are chromatin architectural proteins that do not have transcriptional activity per s...
The state of chromatin in human embryonic stem cells (hESCs) is a key factor determining stem cell i...
High mobility group A (HMGA) proteins are chromatinic proteins that do not have transcriptional acti...
The high-mobility group Hmga family of proteins are non-histone chromatin-interacting proteins which...
Background: High mobility group A (HMGA) proteins regulate gene transcription through architectural ...
AbstractThe high-mobility group (HMG) protein A2 has been studied mostly in the mouse where its func...
HMGA (high mobility group A) (HMGA1 and HMGA2) are small non-histone proteins that can bind DNA and...
<div><h3>Background</h3><p>Although recent studies have identified genes expressed in human embryoni...
Background: Although recent studies have identified genes expressed in human embryonic stem cells (h...
The high mobility group protein 2 (HMGA2) regulates gene expression by binding to ATrich regions of ...
Background The HMGA2 gene, coding for an architectural transcription factor involved...
High Motility Group A-T hook 2 (HMGA2) is a transcriptional regulator that binds to short AT rich se...
HMGA1 proteins belong to a family of nonhistone chromatin proteins able to bind DNA in AT-rich regio...
AbstractThe human high-mobility group protein A2 (HMGA2) protein is an architectural transcription f...
Induced pluripotent stem cells (iPSCs) are rapidly evolving into an important research tool due to t...
HMGA1 and HMGA2 are chromatin architectural proteins that do not have transcriptional activity per s...
The state of chromatin in human embryonic stem cells (hESCs) is a key factor determining stem cell i...
High mobility group A (HMGA) proteins are chromatinic proteins that do not have transcriptional acti...
The high-mobility group Hmga family of proteins are non-histone chromatin-interacting proteins which...
Background: High mobility group A (HMGA) proteins regulate gene transcription through architectural ...
AbstractThe high-mobility group (HMG) protein A2 has been studied mostly in the mouse where its func...
HMGA (high mobility group A) (HMGA1 and HMGA2) are small non-histone proteins that can bind DNA and...
<div><h3>Background</h3><p>Although recent studies have identified genes expressed in human embryoni...
Background: Although recent studies have identified genes expressed in human embryonic stem cells (h...
The high mobility group protein 2 (HMGA2) regulates gene expression by binding to ATrich regions of ...
Background The HMGA2 gene, coding for an architectural transcription factor involved...
High Motility Group A-T hook 2 (HMGA2) is a transcriptional regulator that binds to short AT rich se...
HMGA1 proteins belong to a family of nonhistone chromatin proteins able to bind DNA in AT-rich regio...
AbstractThe human high-mobility group protein A2 (HMGA2) protein is an architectural transcription f...
Induced pluripotent stem cells (iPSCs) are rapidly evolving into an important research tool due to t...