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Query: UNIPROT:P04637 (
p53
)
77,613
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Deficiency of ribosomal proteins (RPs) leads to
Diamond Blackfan Anemia
(
DBA
) associated with anemia, congenital defects, and cancer. While
p53
activation is responsible for many features of
DBA
, the role of immune system is less defined. The Innate immune system can be activated by endogenous nucleic acids from non-processed pre-rRNAs, DNA damage, and apoptosis that occurs in
DBA
. Recognition by toll like receptors (TLRs) and Mda5-like sensors induces interferons (IFNs) and inflammation. Dying cells can also activate complement system. Therefore we analyzed the status of these pathways in RP-deficient zebrafish and found upregulation of interferon, inflammatory cytokines and mediators, and complement. We also found upregulation of receptors signaling to IFNs including Mda5, Tlr3, and Tlr9. TGFb family member activin was also upregulated in RP-deficient zebrafish and in RPS19-deficient human cells, which include a lymphoid cell line from a
DBA
patient, and fetal liver cells and K562 cells transduced with RPS19 shRNA. Treatment of RP-deficient zebrafish with a TLR3 inhibitor decreased IFNs activation, acute phase response, and apoptosis and improved their hematopoiesis and morphology. Inhibitors of complement and activin also had beneficial effects. Our studies suggest that innate immune system contributes to the phenotype of RPS19-deficient zebrafish and human cells.
...
PMID:Innate immune system activation in zebrafish and cellular models of Diamond Blackfan Anemia. 2958 25
Diamond-Blackfan anemia
(
DBA
) is a rare inherited bone marrow failure disorder linked predominantly to ribosomal protein gene mutations. Here the European
DBA
consortium reports novel mutations identified in the
RPL15
gene in 6 unrelated individuals diagnosed with
DBA
. Although point mutations have not been previously reported for
RPL15
, we identified 4 individuals with truncating mutations p.Tyr81* (in 3 of 4) and p.Gln29*, and 2 with missense variants p.Leu10Pro and p.Lys153Thr. Notably, 75% (3 of 4) of truncating mutation carriers manifested with severe hydrops fetalis and required intrauterine transfusions. Even more remarkable is the observation that the 3 carriers of p.Tyr81* mutation became treatment-independent between four and 16 months of life and maintained normal blood counts until their last follow up. Genetic reversion at the DNA level as a potential mechanism of remission was not observed in our patients.
In vitro
studies revealed that cells carrying
RPL15
mutations have pre-rRNA processing defects, reduced 60S ribosomal subunit formation, and severe proliferation defects. Red cell culture assays of
RPL15
-mutated primary erythroblast cells also showed a severe reduction in cell proliferation, delayed erythroid differentiation, elevated
TP53
activity, and increased apoptosis. This study identifies a novel subgroup of
DBA
with mutations in the
RPL15
gene with an unexpected high rate of hydrops fetalis and spontaneous, long-lasting remission.
...
PMID:Recurring mutations in
RPL15
are linked to hydrops fetalis and treatment independence in Diamond-Blackfan anemia. 2959 5
Inherited bone-marrow-failure syndromes (IBMFSs) include heterogeneous genetic disorders characterized by bone-marrow failure, congenital anomalies, and an increased risk of malignancy. Many lines of evidence have suggested that
p53
activation might be central to the pathogenesis of IBMFSs, including
Diamond-Blackfan anemia
(
DBA
) and dyskeratosis congenita (DC). However, the exact role of
p53
activation in each clinical feature remains unknown. Here, we report unique de novo
TP53
germline variants found in two individuals with an IBMFS accompanied by hypogammaglobulinemia, growth retardation, and microcephaly mimicking
DBA
and DC.
TP53
is a tumor-suppressor gene most frequently mutated in human cancers, and occasional germline variants occur in Li-Fraumeni cancer-predisposition syndrome. Most of these mutations affect the core DNA-binding domain, leading to compromised transcriptional activities. In contrast, the variants found in the two individuals studied here caused the same truncation of the protein, resulting in the loss of 32 residues from the C-terminal domain (CTD). Unexpectedly, the
p53
mutant had augmented transcriptional activities, an observation not previously described in humans. When we expressed this mutant in zebrafish and human-induced pluripotent stem cells, we observed impaired erythrocyte production. These findings together with close similarities to published knock-in mouse models of
TP53
lacking the CTD demonstrate that the CTD-truncation mutations of
TP53
cause IBMFS, providing important insights into the previously postulated connection between
p53
and IBMFSs.
...
PMID:De Novo Mutations Activating Germline TP53 in an Inherited Bone-Marrow-Failure Syndrome. 3014 26
The term cell competition has been used to describe the phenomenon whereby particular cells can be eliminated during tissue growth only when more competitive cells are available to replace them. Multiple examples implicate differential activity of
p53
in cell competition in mammals, but
p53
has not been found to have the same role in Drosophila, where the phenomenon of cell competition was first recognized. Recent studies now show that Drosophila cells harboring mutations in Ribosomal protein (Rp) genes, which are eliminated by cell competition with wild type cells, activate a p53 target gene, Xrp1. In
Diamond Blackfan Anemia
, human Rp mutants activate
p53
itself, through a nucleolar stress pathway. These results suggest a link between mammalian and Drosophila Rp mutants, translation, and cell competition.
...
PMID:A potential link between p53, cell competition and ribosomopathy in mammals and in Drosophila. 3051 8
Inherited bone marrow failure syndromes are experiments of nature characterized by impaired hematopoiesis with cancer and leukemia predisposition. The mutations associated with inherited bone marrow failure syndromes affect fundamental cellular pathways, such as DNA repair, telomere maintenance, or proteostasis. How these disturbed pathways fail to produce sufficient blood cells and lead to leukemogenesis are not understood. The rarity of inherited cytopenias, the paucity of affected primary human hematopoietic cells, and the sometime inadequacy of murine or induced pluripotential stem cell models mean it is difficult to acquire a greater understanding of them. Zebrafish offer a model organism to study gene functions. As vertebrates, zebrafish share with humans many orthologous genes involved in blood disorders. As a model organism, zebrafish provide advantages that include rapid development of transparent embryos, high fecundity (providing large numbers of mutant and normal siblings), and a large collection of mutant and transgenic lines useful for investigating the blood system and other tissues during development. Importantly, recent advances in genomic editing in zebrafish can speedily validate the new genes or novel variants discovered in clinical investigation as causes for marrow failure. Here we review zebrafish as a model organism that phenocopies Fanconi anemia,
Diamond-Blackfan anemia
, dyskeratosis congenita, Shwachman-Diamond syndrome, congenital amegakaryocytic thrombocytopenia, and severe congenital neutropenia. Two important insights, provided by modeling inherited cytopenias in zebrafish, widen understanding of ribosome biogenesis and
TP53
in mediating marrow failure and non-hematologic defects. They suggest that
TP53
-independent pathways contribute to marrow failure. In addition, zebrafish provide an attractive model organism for drug development.
...
PMID:Peering through zebrafish to understand inherited bone marrow failure syndromes. 3057 10
Ribosome is a vital molecular machine for protein translation in the cell. Defects in several ribosomal proteins including RPS19, RPL11 and RPS14 have been observed in two types of anemia:
Diamond Blackfan Anemia
and 5q- syndrome. In zebrafish, deficiency of these ribosomal proteins shows similar anemic phenotype. It remains to be determined if any other ribosome proteins are similarly involved in regulating erythropoiesis. Here we generated mutations in zebrafish
rps9
, a rarely studied ribosomal protein gene, and investigated its function. Analysis of this mutant demonstrates that
rps9
disruption leads to impairment of erythrocyte maturation, resulting in anemia. In addition, the overall phenotype including the anemic state is
p53
-dependent in
rps9
mutants. Furthermore, this anemic state can be partially relieved by the treatment of L-leucine, and dexamethasone, which have been previously used in rescuing the phenotype of other ribosomal protein mutants. Finally, by comparing the phenotype, we show that there are considerable differences in morphology, cytomorphology, and hemoglobin levels for four ribosomal protein mutants in zebrafish. Based on the observed difference, we suggest that the level of anemic severity correlates with the delayed status of erythrocyte maturation in zebrafish models.
...
PMID:Loss of
rps9
in Zebrafish Leads to
p53
-Dependent Anemia. 3161 61
Variants in ribosomal protein (RP) genes drive
Diamond-Blackfan anemia
(
DBA
), a bone marrow failure syndrome that can also predispose individuals to cancer. Inherited and sporadic RP gene variants are also linked to a variety of phenotypes, including malignancy, in individuals with no anemia. Here we report an individual diagnosed with
DBA
carrying a variant in the 5'UTR of RPL9 (uL6). Additionally, we report two individuals from a family with multiple cancer incidences carrying a RPL9 missense variant. Analysis of cells from these individuals reveals that despite the variants both driving pre-rRNA processing defects and 80S monosome reduction, the downstream effects are remarkably different. Cells carrying the 5'UTR variant stabilize
TP53
and impair the growth and differentiation of erythroid cells. In contrast, ribosomes incorporating the missense variant erroneously read through UAG and UGA stop codons of mRNAs. Metabolic profiles of cells carrying the 5'UTR variant reveal an increased metabolism of amino acids and a switch from glycolysis to gluconeogenesis while those of cells carrying the missense variant reveal a depletion of nucleotide pools. These findings indicate that variants in the same RP gene can drive similar ribosome biogenesis defects yet still have markedly different downstream consequences and clinical impacts.
...
PMID:Ribosomal protein gene RPL9 variants can differentially impair ribosome function and cellular metabolism. 3179 29
Diamond-Blackfan anemia
(
DBA
) is a rare, inherited bone marrow failure syndrome, characterized by red blood cell aplasia, developmental abnormalities, and enhanced risk of malignancy. However, the underlying pathogenesis of
DBA
is yet to be understood. Recently, mutations in the gene encoding ribosomal protein (RP) L18 were identified in
DBA
patients. RPL18 is a crucial component of the ribosomal large subunit but its role in hematopoiesis remains unknown. To genetically model the ribosomal defect identified in
DBA
, we generated a rpl18 mutant line in zebrafish, using CRISPR/Cas9 system. Molecular characterization of this mutant line demonstrated that Rpl18 deficiency mirrored the erythroid defects of
DBA
, namely a lack of mature red blood cells. Rpl18 deficiency caused an increase in
p53
activation and JAK2-STAT3 activity. Furthermore, we found inhibitors of JAK2 or STAT3 phosphorylation could rescue anemia in rpl18 mutants. Our research provides a new in vivo model of Rpl18 deficiency and suggests involvement of signal pathway of JAK2-STAT3 in the
DBA
pathogenesis.
...
PMID:The nuclear gene rpl18 regulates erythroid maturation via JAK2-STAT3 signaling in zebrafish model of Diamond-Blackfan anemia. 3207 53
Diamond-Blackfan anemia
is an autosomal dominant syndrome, characterized by anemia and a predisposition for malignancies. Ribosomal proteins are responsible for this syndrome, and the incidence of colorectal cancer in patients with this syndrome is higher than the general population. This patient's
Diamond-Blackfan anemia
was caused by a novel ribosomal protein S19 gene mutation, and he received chemotherapy for colorectal cancer caused by it. In his cancer, ribosomal proteins S19 and
TP53
were overexpressed. He received 5FU and cetuximab; however, his anemia made chemotherapy difficult, and he did not survive long. Patients with
Diamond-Blackfan anemia
should be screened earlier and more often for colorectal cancer than usual.
...
PMID:Outcome of colorectal cancer in Diamond-Blackfan syndrome with a ribosomal protein S19 mutation. 3264 23
Diamond-Blackfan anemia
(
DBA
) was the first ribosomopathy described and is a constitutional inherited bone marrow failure syndrome. Erythroblastopenia is the major characteristic of the disease, which is a model for ribosomal diseases, related to a heterozygous allelic variation in 1 of the 20 ribosomal protein genes of either the small or large ribosomal subunit. The salient feature of classical
DBA
is a defect in ribosomal RNA maturation that generates nucleolar stress, leading to stabilization of
p53
and activation of its targets, resulting in cell-cycle arrest and apoptosis. Although activation of
p53
may not explain all aspects of
DBA
erythroid tropism, involvement of GATA1/HSP70 and globin/heme imbalance, with an excess of the toxic free heme leading to reactive oxygen species production, account for defective erythropoiesis in
DBA
. Despite significant progress in defining the molecular basis of
DBA
and increased understanding of the mechanistic basis for
DBA
pathophysiology, progress in developing new therapeutic options has been limited. However, recent advances in gene therapy, better outcomes with stem cell transplantation, and discoveries of putative new drugs through systematic drug screening using large chemical libraries provide hope for improvement.
...
PMID:Diamond-Blackfan anemia. 3270 55
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