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2.
EJHaem ; 2(2): 175-187, 2021 May.
Artigo em Inglês | MEDLINE | ID: mdl-34124710

RESUMO

The SARS-CoV-2 virus causes COVID-19, an infection capable of causing severe disease and death but which can also be asymptomatic or oligosymptomatic. We investigated whether ABO blood group or secretor status was associated with COVID-19 severity. We investigated secretor status because expression of ABO glycans on secreted proteins and non-erythroid cells are controlled by a fucosyltransferase (FUT2), and inactivating FUT2 mutations result in a non-secretor phenotype which protects against some viral infections. Data combined from healthcare records and our own laboratory tests (n = 275) of hospitalized SARS-CoV-2 polymerase chain reaction positive patients confirmed higher than expected numbers of blood group A individuals compared to O (RR = 1.24, CI 95% [1.05, 1.47], p = 0.0111). There was also a significant association between group A and COVID-19-related cardiovascular complications (RR = 2.56, CI 95% [1.43, 4.55], p = 0.0011) which is independent of gender. Molecular analysis revealed that group A non-secretors are significantly less likely to be hospitalized than secretors. Testing of convalescent plasma donors, among whom the majority displayed COVID-19 symptoms and only a small minority required hospitalization, group A non-secretors were slightly over-represented. Our findings showed that group A non-secretors are not resistant to infection by SARS-CoV-2, but are more likely to experience a less severe form of associated disease.

3.
Haematologica ; 106(11): 2859-2873, 2021 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-33054117

RESUMO

Human ZNF648 is a novel poly C-terminal C2H2 zinc finger protein identified amongst the most dysregulated proteins in erythroid cells differentiated from iPSC. Its nuclear localisation and structure indicate it is likely a DNA-binding protein. Using a combination of ZNF648 overexpression in an iPSC line and primary adult erythroid cells, ZNF648 knockdown in primary adult erythroid cells and megakaryocytes, comparative proteomics and transcriptomics we show that ZNF648 is required for both erythroid and megakaryocyte differentiation. Orthologues of ZNF648 were detected across Mammals, Reptilia, Actinopterygii, in some Aves, Amphibia and Coelacanthiformes suggesting the gene originated in the common ancestor of Osteichthyes (Euteleostomi or bony fish). Conservation of the C-terminal zinc finger domain is higher, with some variation in zinc finger number but a core of at least six zinc fingers conserved across all groups, with the N-terminus recognisably similar within but not between major lineages. This suggests the N-terminus of ZNF648 evolves faster than the C-terminus, however this is not due to exon-shuffling as the entire coding region of ZNF648 is within a single exon. As for other such transcription factors, the N-terminus likely carries out regulatory functions, but showed no sequence similarity to any known domains. The greater functional constraint on the zinc finger domain suggests ZNF648 binds at least some similar regions of DNA in the different organisms. However, divergence of the N-terminal region may enable differential expression, allowing adaptation of function in the different organisms.


Assuntos
Eritrócitos/citologia , Megacariócitos/citologia , Fatores de Transcrição , Dedos de Zinco , Animais , Diferenciação Celular/genética , Proteínas de Ligação a DNA/metabolismo , Humanos
4.
Nat Commun ; 11(1): 3569, 2020 07 16.
Artigo em Inglês | MEDLINE | ID: mdl-32678083

RESUMO

The clinically important MAM blood group antigen is present on haematopoietic cells of all humans except rare MAM-negative individuals. Its molecular basis is unknown. By whole-exome sequencing we identify EMP3, encoding epithelial membrane protein 3 (EMP3), as a candidate gene, then demonstrate inactivating mutations in ten known MAM-negative individuals. We show that EMP3, a purported tumour suppressor in various solid tumours, is expressed in erythroid cells. Disruption of EMP3 by CRISPR/Cas9 gene editing in an immortalised human erythroid cell line (BEL-A2) abolishes MAM expression. We find EMP3 to associate with, and stabilise, CD44 in the plasma membrane. Furthermore, cultured erythroid progenitor cells from MAM-negative individuals show markedly increased proliferation and higher reticulocyte yields, suggesting an important regulatory role for EMP3 in erythropoiesis and control of cell production. Our data establish MAM as a new blood group system and demonstrate an interaction of EMP3 with the cell surface signalling molecule CD44.


Assuntos
Antígenos de Grupos Sanguíneos/genética , Proliferação de Células , Células Eritroides/citologia , Glicoproteínas de Membrana/genética , Antígenos de Grupos Sanguíneos/química , Antígenos de Grupos Sanguíneos/metabolismo , Plaquetas/metabolismo , Células Cultivadas , Membrana Eritrocítica/metabolismo , Células Eritroides/metabolismo , Humanos , Receptores de Hialuronatos/metabolismo , Glicoproteínas de Membrana/química , Glicoproteínas de Membrana/metabolismo , Modelos Moleculares , Mutação , Fenótipo , Ligação Proteica , Sequenciamento do Exoma
6.
Haematologica ; 99(11): 1677-85, 2014 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-25107887

RESUMO

A major barrier to the clinical use of erythrocytes generated in vitro from pluripotent stem cells or cord blood progenitors is failure of these erythrocytes to express adult hemoglobin. The key regulators of globin switching KLF1 and BCL11A are absent or at a lower level than in adult cells in K562 and erythroid cells differentiated in vitro from induced pluripotent stem cells and cord blood progenitors. Transfection or transduction of K562 and cord blood erythroid cells with either KLF1 or BCL11A-XL had little effect on ß-globin expression. In contrast, transduction with both transcription factors stimulated ß-globin expression. Similarly, increasing the level of BCL11A-XL in the induced pluripotent stem cell-derived erythroid cell line HiDEP-1, which has levels of endogenous KLF1 similar to adult cells but lacks BCL11A, resulted in levels of ß-globin equivalent to that of adult erythroid cells. Interestingly, this increase in ß-globin was coincident with a decrease in ε- and ζ-, but not γ-globin, implicating BCL11A in repression of embryonic globin expression. The data show that KLF1 and BCL11A-XL together are required, but sufficient to induce adult levels of ß-globin in induced pluripotent stem cell and cord blood-derived erythroid cells that intrinsically express embryonic or fetal globin.


Assuntos
Proteínas de Transporte/genética , Células Eritroides/metabolismo , Hemoglobina Fetal/genética , Expressão Gênica , Fatores de Transcrição Kruppel-Like/genética , Proteínas Nucleares/genética , Transdução Genética , Globinas beta/genética , Células-Tronco Adultas/citologia , Células-Tronco Adultas/metabolismo , Diferenciação Celular/genética , Linhagem Celular , Células Eritroides/citologia , Células-Tronco Hematopoéticas/citologia , Células-Tronco Hematopoéticas/metabolismo , Humanos , Células-Tronco Pluripotentes Induzidas/citologia , Células-Tronco Pluripotentes Induzidas/metabolismo , Células K562 , Fenótipo , Proteínas Repressoras , Transfecção , Globinas épsilon/genética , gama-Globinas/genética
7.
Autophagy ; 9(6): 881-93, 2013 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-23508006

RESUMO

Wholesale depletion of membrane organelles and extrusion of the nucleus are hallmarks of mammalian erythropoiesis. Using quantitative EM and fluorescence imaging we have investigated how autophagy contributes to organelle removal in an ex vivo model of human erythroid differentiation. We found that autophagy is induced at the polychromatic erythroid stage, and that autophagosomes remain abundant until enucleation. This stimulation of autophagy was concomitant with the transcriptional upregulation of many autophagy genes: of note, expression of all ATG8 mammalian paralog family members was stimulated, and increased expression of a subset of ATG4 family members (ATG4A and ATG4D) was also observed. Stable expression of dominant-negative ATG4 cysteine mutants (ATG4B (C74A) ; ATG4D (C144A) ) did not markedly delay or accelerate differentiation of human erythroid cells; however, quantitative EM demonstrated that autophagosomes are assembled less efficiently in ATG4B (C74A) -expressing progenitor cells, and that cells expressing either mutant accumulate enlarged amphisomes that cannot be degraded. The appearance of these hybrid autophagosome/endosome structures correlated with the contraction of the lysosomal compartment, suggesting that the actions of ATG4 family members (particularly ATG4B) are required for the control of autophagosome fusion with late, degradative compartments in differentiating human erythroblasts.


Assuntos
Autofagia , Diferenciação Celular , Cisteína Endopeptidases/metabolismo , Fagossomos/metabolismo , Homologia de Sequência de Aminoácidos , Proteínas Relacionadas à Autofagia , Compartimento Celular , Cisteína/genética , Eritroblastos/citologia , Eritroblastos/metabolismo , Eritroblastos/ultraestrutura , Células HEK293 , Células HeLa , Humanos , Membranas Intracelulares/metabolismo , Membranas Intracelulares/ultraestrutura , Mitocôndrias/metabolismo , Mitocôndrias/ultraestrutura , Proteínas Mutantes/metabolismo , Fagossomos/ultraestrutura , Regulação para Cima
9.
Curr Opin Hematol ; 19(6): 486-93, 2012 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-22954727

RESUMO

PURPOSE OF REVIEW: This review describes the genetics of unusual blood group phenotypes, particularly those with altered expression of Lutheran antigens, and how this area of study has informed our understanding of erythropoiesis in general and haemoglobin switching in particular. RECENT FINDINGS: Mutations in erythroid transcription factors GATA1 (GATA1 binding protein 1) and KLF1 (Kruppel-like factor 1) cause benign and disease phenotypes in humans [X-linked Lu(a-b-) phenotype, In(Lu) blood group phenotype, hereditary persistence of foetal haemoglobin, borderline HbA(2), and congenital dyserythropoietic anaemia (CDA)]. These studies explain the occurrence of rare blood group phenotypes with simultaneous altered expression of antigens from several blood group systems and illuminate the role of KLF1 in gamma and delta globin gene regulation. SUMMARY: The study of rare blood group phenotypes is a potent tool for discovery of mutations in human genes. Elucidation of the molecular basis of the rare In(Lu) phenotype revealed the first mutations in human KLF1. Subsequently, numerous additional mutations have been described, one of which causes a rare form of CDA. Analysis of the X-linked Lu(a-b-) phenotype revealed a mutation in the C-terminal domain of human GATA1. The apparent sensitivity of the Lutheran glycoprotein to alterations in GATA1 and KLF1 activity suggest that it could be a useful biomarker of erythroid transcription factor mutation.


Assuntos
Antígenos de Grupos Sanguíneos/genética , Fator de Transcrição GATA1/genética , Fatores de Transcrição Kruppel-Like/genética , Mutação , Fator de Transcrição GATA1/metabolismo , Regulação da Expressão Gênica , Humanos , Fatores de Transcrição Kruppel-Like/metabolismo , Fenótipo
10.
Blood ; 118(11): 3137-45, 2011 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-21778342

RESUMO

Mutations in the human erythroid Krüppel-like factor (EKLF) can lead to either anemia or the benign InLu phenotype. To elucidate the relationship between these mutations and the differing phenotypes, we prepared recombinant forms of wild-type and 5 mutant EKLF proteins and quantitated their binding affinity to a range of EKLF-regulated genes. Missense mutants (R328H, R328L, and R331G) from persons with InLu phenotype did not bind DNA. Hence, as with the heterozygous loss of function nonsense (L127X, S270X, and K292X) and frameshift (P190Lfs and R319Efs) EKLF mutations, monoallelic loss of EKLF does not result in haploinsufficiency at all loci. In contrast, K332Q has a slightly reduced DNA binding affinity (∼ 2-fold) for all promoters examined but exhibits a phenotype only in a compound heterozygote with a nonfunctional allele. E325K also has a reduced, but significant, binding affinity, particularly for the ß-globin gene but results in a disease phenotype even with the wild-type allele expressed, although not as a classic dominant-negative mutant. E325K protein may therefore actively interfere with EKLF-dependent processes by destabilizing transcription complexes, providing a rational explanation for the severity of the disease phenotype. Our study highlights the critical role of residues within the second EKLF zinc finger domain.


Assuntos
Doença/genética , Fatores de Transcrição Kruppel-Like/genética , Fatores de Transcrição Kruppel-Like/fisiologia , Regiões Promotoras Genéticas , Sequência de Aminoácidos , Sítios de Ligação/genética , Células Cultivadas , Humanos , Fatores de Transcrição Kruppel-Like/química , Modelos Biológicos , Modelos Moleculares , Dados de Sequência Molecular , Mutação/fisiologia , Fenótipo , Regiões Promotoras Genéticas/genética , Regiões Promotoras Genéticas/fisiologia , Homologia de Sequência de Aminoácidos , Índice de Gravidade de Doença , Especificidade por Substrato/genética , Ativação Transcricional , Dedos de Zinco/genética
11.
Nat Genet ; 43(4): 295-301, 2011 Mar 20.
Artigo em Inglês | MEDLINE | ID: mdl-21423179

RESUMO

We developed a series of interrelated locus-specific databases to store all published and unpublished genetic variation related to hemoglobinopathies and thalassemia and implemented microattribution to encourage submission of unpublished observations of genetic variation to these public repositories. A total of 1,941 unique genetic variants in 37 genes, encoding globins and other erythroid proteins, are currently documented in these databases, with reciprocal attribution of microcitations to data contributors. Our project provides the first example of implementing microattribution to incentivise submission of all known genetic variation in a defined system. It has demonstrably increased the reporting of human variants, leading to a comprehensive online resource for systematically describing human genetic variation in the globin genes and other genes contributing to hemoglobinopathies and thalassemias. The principles established here will serve as a model for other systems and for the analysis of other common and/or complex human genetic diseases.


Assuntos
Bases de Dados Genéticas , Variação Genética , Hemoglobinopatias/genética , Sequência de Bases , DNA/genética , Mineração de Dados , Genoma Humano , Hemoglobinas/genética , Projeto Genoma Humano , Humanos , Dados de Sequência Molecular , Mutação , Regiões Promotoras Genéticas , Editoração
12.
Br J Haematol ; 142(4): 657-67, 2008 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-18537974

RESUMO

Tn polyagglutination results from inactivating mutations in C1GALT1C1, an X-borne gene encoding a core 1 beta3-galactosyltransferase-specific molecular chaperone (cosmc) required for the functioning of T-synthase (beta 1,3-galactosyltransferase), a glycosyltransferase essential for the correct biosynthesis of O-glycans. This study found novel inactivating mutations (Glu152Lys, Ser193Pro and Met1Ile) in the coding sequence of C1GALT1C1 in three Tn positive individuals and a complete lack of C1GALT1C1 cDNA expression was observed in an additional Tn positive individual. In addition, expression of ST6GALNAC1, which encodes (alpha-N-acetyl-neuraminyl-2,3-beta-galactosyl-1, 3)-N-acetylgalactosaminide alpha-2,6-sialyltransferase 1 and gives rise to sialyl-Tn antigen, was present at comparable levels in normal and Tn-positive human erythroblasts. Expression studies of wild-type and Tn positive C1GALT1C1 cDNA in the Jurkat cell line confirmed that the amino acid substitutions observed in Tn are inactivating. Analysis of the transcriptome of cultured normal and Tn positive erythroblasts revealed numerous differences in gene expression. Reduced transcript levels for fatty acid binding protein 5 (FABP5) and plexin D1 (PLXND1), and increased levels for aquaporin 3 (AQP3) were confirmed by quantitative real-time polymerase chain reaction. These data show that alteration of O-glycan structures resulting from T-synthase deficiency is accompanied by altered expression of a wide variety of genes in erythroid cells.


Assuntos
Antígenos Glicosídicos Associados a Tumores/genética , Galactosiltransferases/genética , Hemaglutinação/genética , Chaperonas Moleculares/genética , Mutação/genética , Células Sanguíneas/metabolismo , Eritroblastos/metabolismo , Galactosiltransferases/metabolismo , Humanos , Fenótipo , Reação em Cadeia da Polimerase Via Transcriptase Reversa
13.
Blood ; 112(5): 2081-8, 2008 Sep 01.
Artigo em Inglês | MEDLINE | ID: mdl-18487511

RESUMO

Comparison of normal erythroblasts and erythroblasts from persons with the rare In(Lu) type of Lu(a-b-) blood group phenotype showed increased transcription levels for 314 genes and reduced levels for 354 genes in In(Lu) cells. Many erythroid-specific genes (including ALAS2, SLC4A1) had reduced transcript levels, suggesting the phenotype resulted from a transcription factor abnormality. A search for mutations in erythroid transcription factors showed mutations in the promoter or coding sequence of EKLF in 21 of 24 persons with the In(Lu) phenotype. In all cases the mutant EKLF allele occurred in the presence of a normal EKLF allele. Nine different loss-of-function mutations were identified. One mutation abolished a GATA1 binding site in the EKLF promoter (-124T>C). Two mutations (Leu127X; Lys292X) resulted in premature termination codons, 2 (Pro190LeufsX47; Arg319GlufsX34) in frameshifts, and 4 in amino acid substitution of conserved residues in zinc finger domain 1 (His299Tyr) or domain 2 (Arg328Leu; Arg328His; Arg331Gly). Persons with the In(Lu) phenotype have no reported pathology, indicating that one functional EKLF allele is sufficient to sustain human erythropoiesis. These data provide the first description of inactivating mutations in human EKLF and the first demonstration of a blood group phenotype resulting from mutations in a transcription factor.


Assuntos
Moléculas de Adesão Celular/genética , Fatores de Transcrição Kruppel-Like/genética , Sistema do Grupo Sanguíneo Lutheran/genética , Mutação , Proteínas de Neoplasias/genética , Sequência de Aminoácidos , Sequência de Bases , Células Cultivadas , Primers do DNA/genética , DNA Complementar/genética , Eritroblastos/metabolismo , Perfilação da Expressão Gênica , Genótipo , Humanos , Fatores de Transcrição Kruppel-Like/química , Modelos Moleculares , Dados de Sequência Molecular , Fenótipo , Homologia de Sequência de Aminoácidos , Transcrição Gênica , Dedos de Zinco/genética
14.
Br J Haematol ; 122(4): 682-5, 2003 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-12899725

RESUMO

McLeod Syndrome (MLS) is a rare X-linked disorder characterized by haemopoietic abnormalities and late-onset neurological and muscular defects. The McLeod blood group phenotype is typically associated with erythrocyte acanthocytosis, absence of the Kx antigen and reduced expression of Kell system antigens. MLS is caused by hemizygosity for mutations in the XK gene. We describe a patient with MLS who first showed symptoms in 1989 (aged 51 years). As the disease progressed, the patient developed a slight dementia, aggressive behaviour and choreatic movements. A cardiomyopathy was also diagnosed. An electroneuromyography showed neuropathic and myopathic changes. Liver enzymes were elevated and a blood smear showed acanthocytes. MLS was confirmed by serological analysis of the Kell antigens. Analysis of red blood cells by flow cytometry revealed the patient and his grandson to have reduced Kell antigen expression. The patient's daughters had two populations of red cells, consistent with them being heterozygous for an XK0 allele. The molecular basis of MLS in this family is a novel mutation consisting of a 7453-bp deletion that includes exon 2 of the XK gene. This confirms that the patient's 7-year-old grandson, who is currently asymptomatic, also has the XK0 allele and is therefore likely to develop MLS.


Assuntos
Sistemas de Transporte de Aminoácidos Neutros/genética , Deleção de Genes , Doenças Hematológicas/genética , Sistema do Grupo Sanguíneo de Kell/genética , Sequência de Bases , Feminino , Doenças Genéticas Ligadas ao Cromossomo X/genética , Humanos , Masculino , Pessoa de Meia-Idade , Dados de Sequência Molecular , Doenças Neuromusculares/genética , Síndrome
15.
Cancer Res ; 62(21): 6263-9, 2002 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-12414656

RESUMO

Densely ionizing radiations interact with DNA to cause heavily clustered sites of damage that are difficult to repair correctly. We have been able to determine for the first time the breakpoints of several very large deletions induced by densely ionizing radiation in diploid human cells and show that damage clustering is reflected in the complexity of mutations. Intra- and interchromosomal insertions and inversions occur at the sites of some large deletions. Short sequence repeats are commonly found at the breakpoints, showing that microhomologies help patch damage sites. We suggest that novel fragments found in complex rearrangements derive from other sites of radiation damage in the same cell. These transmissible molecular changes are echoed by visible chromosome rearrangements many days after irradiation and are likely to contribute significantly to the carcinogenic properties of densely ionizing radiations.


Assuntos
Dano ao DNA/genética , DNA/efeitos da radiação , Rearranjo Gênico/efeitos da radiação , Partículas alfa , Sequência de Bases , Quebra Cromossômica , Cromossomos Humanos X/genética , Cromossomos Humanos X/efeitos da radiação , DNA/genética , Fibroblastos/fisiologia , Fibroblastos/efeitos da radiação , Deleção de Genes , Humanos , Hipoxantina Fosforribosiltransferase/genética , Hibridização in Situ Fluorescente , Masculino , Dados de Sequência Molecular
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