Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
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Target Concepts:
Gene/Protein
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Query: UNIPROT:P04637 (
p53
)
77,613
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Osteosarcoma (OS) is the most frequent primary bone cancer in children and adolescents and the third most frequent in adults. Many inherited germline mutations are responsible for syndromes that predispose to osteosarcomas including Li Fraumeni syndrome, retinoblastoma syndrome, Werner syndrome, Bloom syndrome or
Diamond-Blackfan anemia
.
TP53
is the most frequently altered gene in osteosarcoma. Among other genes mutated in more than 10% of OS cases, c-Myc plays a role in OS development and promotes cell invasion by activating MEK-ERK pathways. Several genomic studies showed frequent alterations in the
RB
gene in pediatric OS patients. Osteosarcoma driver mutations have been reported in
NOTCH1
,
FOS
,
NF2
,
WIF1
,
BRCA2
,
APC
,
PTCH1
and
PRKAR1A
genes. Some miRNAs such as miR-21, -34a, -143, -148a, -195a, -199a-3p and -382 regulate the pathogenic activity of MAPK and PI3K/Akt-signaling pathways in osteosarcoma. CD133+ osteosarcoma cells have been shown to exhibit stem-like gene expression and can be tumor-initiating cells and play a role in metastasis and development of drug resistance. Although currently osteosarcoma treatment is based on adriamycin chemoregimens and surgery, there are several potential targeted therapies in development. First of all, activity and safety of cabozantinib in osteosarcoma were studied, as well as sorafenib and pazopanib. Finally, novel bifunctional molecules, of potential imaging and osteosarcoma targeting applications may be used in the future.
...
PMID:Molecular Biology of Osteosarcoma. 3275 22
The role of ribosome biogenesis in erythroid development is supported by the recognition of erythroid defects in ribosomopathies in both
Diamond-Blackfan anemia
and 5q- syndrome. Whether ribosome biogenesis exerts a regulatory function on normal erythroid development is still unknown. In the present study, a detailed characterization of ribosome biogenesis dynamics during human and murine erythropoiesis shows that ribosome biogenesis is abruptly interrupted by the drop of rDNA transcription and the collapse of ribosomal protein neo-synthesis. Its premature arrest by RNA polI inhibitor, CX-5461 targets the proliferation of immature erythroblasts. We also show that
p53
is activated spontaneously or in response to CX-5461 concomitantly to ribosome biogenesis arrest, and drives a transcriptional program in which genes involved in cell cycle arrest, negative regulation of apoptosis and DNA damage response were upregulated. RNA polI transcriptional stress results in nucleolar disruption and activation of ATR-CHK1-
p53
pathway. Our results imply that the timing of ribosome biogenesis extinction and
p53
activation are crucial for erythroid development. In ribosomopathies in which ribosome availability is altered by unbalanced production of ribosomal proteins, the threshold of ribosome biogenesis down-regulation could be prematurely reached and together with pathological
p53
activation prevents a normal expansion of erythroid progenitors.
...
PMID:p53 activation during ribosome biogenesis regulates normal erythroid differentiation. 3281 41
Diamond-Blackfan anemia
(
DBA
) is a rare hematopoietic disease characterized by a block in red cell differentiation. Most
DBA
cases are caused by mutations in ribosomal proteins and characterized by higher than normal activity of the
tumor suppressor p53
. Higher
p53
activity is thought to contribute to
DBA
phenotypes by inducing apoptosis during red blood cell differentiation. Currently, there are few therapies available for patients with
DBA
. We performed a chemical screen using zebrafish ribosomal small subunit protein 29 (
rps29
) mutant embryos that have a
p53
-dependent anemia and identified calmodulin inhibitors that rescued the phenotype. Our studies demonstrated that calmodulin inhibitors attenuated
p53 protein
amount and activity. Treatment with calmodulin inhibitors led to decreased
p53
translation and accumulation but does not affect
p53
stability. A U.S. Food and Drug Administration-approved calmodulin inhibitor, trifluoperazine, rescued hematopoietic phenotypes of
DBA
models in vivo in zebrafish and mouse models. In addition, trifluoperazine rescued these phenotypes in human CD34
+
hematopoietic stem and progenitor cells. Erythroid differentiation was also improved in CD34
+
cells isolated from a patient with
DBA
. This work uncovers a potential avenue of therapeutic development for patients with
DBA
.
...
PMID:Calmodulin inhibitors improve erythropoiesis in Diamond-Blackfan anemia. 3308 3
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