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1.
Blood ; 143(13): 1293-1309, 2024 Mar 28.
Artigo em Inglês | MEDLINE | ID: mdl-38142410

RESUMO

ABSTRACT: Although it is caused by a single-nucleotide mutation in the ß-globin gene, sickle cell anemia (SCA) is a systemic disease with complex, incompletely elucidated pathologies. The mononuclear phagocyte system plays critical roles in SCA pathophysiology. However, how heterogeneous populations of hepatic macrophages contribute to SCA remains unclear. Using a combination of single-cell RNA sequencing and spatial transcriptomics via multiplexed error-robust fluorescence in situ hybridization, we identified distinct macrophage populations with diversified origins and biological functions in SCA mouse liver. We previously found that administering the von Willebrand factor (VWF)-cleaving protease ADAMTS13 alleviated vaso-occlusive episode in mice with SCA. Here, we discovered that the ADAMTS13-cleaved VWF was cleared from the circulation by a Clec4f+Marcohigh macrophage subset in a desialylation-dependent manner in the liver. In addition, sickle erythrocytes were phagocytized predominantly by Clec4f+Marcohigh macrophages. Depletion of macrophages not only abolished the protective effect of ADAMTS13 but exacerbated vaso-occlusive episode in mice with SCA. Furthermore, promoting macrophage-mediated VWF clearance reduced vaso-occlusion in SCA mice. Our study demonstrates that hepatic macrophages are important in the pathogenesis of SCA, and efficient clearance of VWF by hepatic macrophages is critical for the protective effect of ADAMTS13 in SCA mice.


Assuntos
Anemia Falciforme , Doenças Vasculares , Camundongos , Animais , Fator de von Willebrand/genética , Hibridização in Situ Fluorescente , Anemia Falciforme/patologia , Macrófagos/patologia , Proteína ADAMTS13/genética
2.
Rinsho Byori ; 62(11): 1074-8, 2014 Nov.
Artigo em Japonês | MEDLINE | ID: mdl-27509724

RESUMO

We recently demonstrated glycation of monoclonal IgA and the presence of IgA-albumin complexes, but the significance of the complexes was not clear. We describe a non-diabetic patient with IgA type M-protein whose serum fructosamine and glycoalbumin levels were elevated. On electrophoresis of the serum protein of the patient, the albumin band shifted to the cathode side. The abnormal precipitin arc of IgA-albumin complexes was detected by immunoelectrophoresis. To elucidate the mechanism of IgA-albumin complexes, we analyzed their properties using immunoelectrophoresis, Western blotting, and two-dimensional gel electrophoresis. The macromolecularized albumin spots were demonstrated by two-dimensional Western blotting with antiserum to human albumin of the patient's serum. Moreover, the IgA-albumin complexes were dissociated on treatment with 2-mercaptoethanol. It can be considered that albumin is bound to the monoclonal IgA molecule by covalent disulfide bonds, and that the albumin binding site is located near the hinge region (311Cys) of the IgA molecule and involves the free SH group, thought to be present in the α-chain.


Assuntos
Eletroforese das Proteínas Sanguíneas/métodos , Proteínas Sanguíneas/análise , Proteínas Sanguíneas/isolamento & purificação , Mieloma Múltiplo/diagnóstico , Albuminas/isolamento & purificação , Anticorpos Monoclonais/isolamento & purificação , Biomarcadores/sangue , Frutosamina/sangue , Frutosamina/isolamento & purificação , Produtos Finais de Glicação Avançada , Humanos , Imunoglobulina A/análise , Imunoglobulina A/isolamento & purificação , Masculino , Pessoa de Meia-Idade , Complexos Multiproteicos/análise , Complexos Multiproteicos/isolamento & purificação , Albumina Sérica/análise , Albumina Sérica/isolamento & purificação , Estatística como Assunto , Albumina Sérica Glicada
3.
Gene ; 491(1): 25-30, 2012 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-21963446

RESUMO

Acid α-glucosidase (GAA) is a lysosomal enzyme that hydrolyzes glycogen to glucose. Deficiency of GAA causes Pompe disease. Mammalian GAA is synthesized as a precursor of ~110,000 Da that is N-glycosylated and targeted to the lysosome via the M6P receptors. In the lysosome, human GAA is sequentially processed by proteases to polypeptides of 76-, 19.4-, and 3.9-kDa that remain associated. Further cleavage between R(200) and A(204) inefficiently converts the 76-kDa polypeptide to the mature 70-kDa form with an additional 10.4-kDa polypeptide. GAA maturation increases its affinity for glycogen by 7-10 fold. In contrast to human GAA, processing of bovine and hamster GAA to the 70-kDa form is more rapid. A comparison of sequences surrounding the cleavage site revealed human GAA contains histidine at 201 while other species contain hydrophobic amino acids at position 201 in the otherwise conserved sequence. Recombinant human GAA (rhGAA) containing the H201L substitution was expressed in 293 T cells by transfection. Pulse chase experiments in 293 T cells expressing rhGAA with or without the H201L substitution revealed rapid processing of rhGAA(H201L) but not rhGAA(WT) to the 70-kDa form. Similarly, when GAA precursor was endocytosed by human Pompe fibroblasts rhGAA(H201L) but not rhGAA(WT) was rapidly converted to the 70-kDa mature GAA. These studies indicate that the amino acid at position 201 influences the rate of conversion of 76-kDa GAA to 70-kDa GAA. The GAA sequence rather than the lysosomal protease environment explains the predominance of the 76-kDa form in human tissues.


Assuntos
Glucana 1,4-alfa-Glucosidase/química , Doença de Depósito de Glicogênio Tipo II/enzimologia , Aminoácidos/metabolismo , Animais , Células CHO , Bovinos , Cricetinae , Endocitose , Humanos , Músculo Esquelético/enzimologia , Proteínas Recombinantes/química , Especificidade da Espécie
4.
J Biol Chem ; 280(43): 36141-9, 2005 Oct 28.
Artigo em Inglês | MEDLINE | ID: mdl-16120602

RESUMO

Lysosomal enzymes are targeted to the lysosome through binding to mannose 6-phosphate receptors because their glycans are modified with mannose 6-phosphate. This modification is catalyzed by UDP-N-acetylglucosamine:lysosomal enzyme N-acetylglucosamine-1-phosphotransferase (GlcNAc-phosphotransferase). Bovine GlcNAc-phosphotransferase was isolated using monoclonal antibody affinity chromatography, and an alpha2beta2gamma2-subunit structure was proposed. Although cDNA encoding the gamma-subunit has been described, cDNAs for the alpha- and beta-subunits have not. Using partial amino acid sequences from the bovine alpha- and beta-subunits, we have isolated a human cDNA that encodes both the alpha- and beta-subunits. Both subunits contain a single predicted membrane-spanning domain. The alpha- and beta-subunits appear to be generated by a proteolytic cleavage at the Lys928-Asp929 bond. Transfection of 293T cells with the alpha/beta-subunits-precursor cDNA with or without the gamma-subunit cDNA results in a 3.6- or 17-fold increase in GlcNAc-phosphotransferase activity in cell lysates, suggesting that the precursor cDNA contains the catalytic domain. The sequence lacks significant similarity with any described vertebrate enzyme except for two Notch-like repeats in the alpha-subunit. However, a 112-amino acid sequence is highly similar to a group of bacterial capsular polymerases (46% identity). A BAC clone containing the gene that spanned 85.3 kb and was composed of 21 exons was sequenced and localized to chromosome 12q23. We now report the cloning of both the cDNA and genomic DNA of the precursor of Glc-NAc-phosphotransferase. The completion of cloning all three subunits of GlcNAc-phosphotransferase allows expression of recombinant enzyme and dissection of lysosomal targeting disorders.


Assuntos
Regulação Enzimológica da Expressão Gênica , Lisossomos/química , N-Acetilglucosaminiltransferases/química , Transferases (Outros Grupos de Fosfato Substituídos)/genética , Transferases (Outros Grupos de Fosfato Substituídos)/fisiologia , Motivos de Aminoácidos , Sequência de Aminoácidos , Animais , Anticorpos Monoclonais/química , Ácido Aspártico/química , Northern Blotting , Domínio Catalítico , Bovinos , Linhagem Celular , Clonagem Molecular , DNA Complementar/metabolismo , Biblioteca Gênica , Humanos , Lisina/química , Camundongos , Modelos Genéticos , Dados de Sequência Molecular , Oligonucleotídeos/química , Peptídeos/química , Plasmídeos/metabolismo , Conformação Proteica , Estrutura Terciária de Proteína , Proteínas Recombinantes/química , Transfecção
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