Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: UMLS:C0023473 (chronic myeloid leukemia)
18,916 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Human leukocyte antigen-G (HLA-G) has long been speculated as a beneficial factor for a successful pregnancy for its restricted expression on fetal-maternal extravillous cytotrophoblasts and its capability of modulating uterine natural killer cell (uNK) function such as cytotoxicity and cytokine production through NK cell receptors. HLA class I alpha1 domain is an important killer cell Ig-like receptor (KIR) recognition site and the Met76 and Gln79 are unique to HLA-G in this region. NK cell receptor KIR2DL4 is a specific receptor for HLA-G, yet the recognition site on HLA-G remains unknown. In this study, retroviral transduction was applied to express the wild type HLA-G (HLA-wtG), mutant HLA-G (HLA-mG) on the chronic myelogenous leukemia cell line K562 cells and KIR2DL4 molecule on NK-92 cells, respectively. KIR2DL4-IgG Fc fusion protein was generated to determine the binding specificity between KIR2DL4 and HLA-G. Our results showed that residue Met76, Gln79 mutated to Ala76,79 in the alpha1 domain of HLA-G protein could affect the binding affinity between KIR2DL4 and HLA-G, meanwhile, the KIR2DL4 transfected NK-92 cells (NK-92-2DL4) showed a considerably different cytolysis ability against the HLA-wtG and HLA-mG transfected K562 targets. Taken together, our data indicated that residue Met76 and Gln79 in HLA-G alpha1 domain plays a critical role in the recognition of KIR2DL4, which could be an explanation for the isoforms of HLA-G, all containing the a1 domain, with the potential to regulate NK functions.
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PMID:Residues Met76 and Gln79 in HLA-G alpha1 domain involve in KIR2DL4 recognition. 1578 Jan 79

Accumulating evidences suggest that killer cell immunoglobulin-like receptors (KIRs) contribute to the pathogenesis of diverse kinds of diseases. However, the functions and effects of KIR gene polymorphisms in the development of diseases remain largely unknown, especially about the activating KIR genes. To investigate the association of KIR gene polymorphisms with subtypes of leukemia, we carried out the present study on 263 patients with leukemia and 239 healthy controls by means of polymerase chain reaction-sequence-specific primer and analysis, and then all data were analyzed by Logistic regression method. Our results showed that the frame genotypes of KIR2DL4, 3DL2, 3DL3 and 3DP1 were expressed in all patients and all controls. The genotypes of KIR2DL1, 2DL3, 3DL1, and 2DP1 were most prevalent genotypes whose rates were more than 95% in all patients and all controls. The rate of activating KIR2DS4 was much higher in patients with CML than that in healthy controls (P<0.001) while the activating KIR2DS3 was lower in patients with ALL compared with healthy controls (P<0.05). There was no significant change of KIR genes found in patients with NALL. In conclusion, this study suggests that the activating KIR2DS4 may serve as CML susceptive gene to trigger leukemia development, while KIR2DS3 is possibly a protect gene of ALL.
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PMID:Killer cell immunoglobulin-like receptor gene polymorphisms in patients with leukemia: possible association with susceptibility to the disease. 2188 24

HLA-G is a non-classical MHC class I molecule whose suppressive activity on immune effector cells is exerted due to interactions with receptors ILT2, ILT4 and KIR2DL4. These receptors are expressed mainly on NK cells and monocytes, and their intensity of expression changes depending on HLA-G level. HLA-G plays an important role in the development of tolerance following organ transplantations and bone marrow stem cell transplantations. HLA-G also participates in the modulation of the immune response during cancerogenesis. The aim of this study was to assess HLA-G level in blood serum, the percentage of NK cells and monocytes with expression of receptors for HLA-G (ILT2, ILT4, KIR2DL4 and NKG2D) in patients who received allogeneic stem cell transplantations, and their influence on the occurrence of graft-versus-host reaction. The study included 32 patients with bone marrow diseases (acute leukemias, myelodysplastic syndrome, chronic myeloid leukemia, paroxysmal nocturnal hemoglobinuria) who received allogeneic stem cell transplantations. We assessed the expression of receptors ILT2, ILT4, KIR2DL4 and NKG2D on monocytes and NK cells, as well as the level of HLA-G in blood serum in patients before conditioning, in the transplant hematopoietic reconstitution period following allogeneic bone marrow stem cell transplantation. The percentage of NK cells with expression of KIR2DL4, ILT2 and ILT4 receptors was higher in patients with 0-I grade GVHD than in patients with II-IV grade GVHD. The percentage of monocytes with expression of ILT4 and ILT2 receptors was higher in patients with 0-I grade GVHD than in patients with II-IV grade GVHD. The level of HLA-G in patients' blood serum was higher after the stem cell transplantation compared with the period before transplantation. HLA-G level and HLA-G receptors are related to intensity of GVHD and may play the role of a prognostic factor for the development of GVHD and the clinical course of this reaction.
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PMID:The role of soluble HLA-G and HLA-G receptors in patients with hematological malignancies after allogeneic stem cell transplantation. 2618 79

OBJECTIVE To assess the association of polymorphisms of KIR2DL4 gene with leukemia among ethnic Hans from southern China. METHODS A total of 590 leukemia patients were recruited, which included 283 cases of acute lymphoblastic leukemia (ALL), 277 cases of acute myeloid leukemia (AML), and 80 cases of chronic myeloid leukemia (CML). Meanwhile, 306 healthy controls were randomly selected from volunteer blood donors. Both groups were subjected to sequence-based typing of the entire coding sequence of the KIR2DL4 gene using an in-house assay. The genotype for each sample was determined with Assign 4.7 SBT software. The frequencies of each detected KIR2DL4 allele, the 9A type KIR2DL4 allele and 10A type KIR2DL4 allele of the ALL, AML and CML groups were compared with those of the control group. RESULTS Five KIR2DL4 alleles, namely KIR2DL4*001, *005, *006, *008 and *011, were detected in the ALL, AML and CML groups as well as the control group. A significant difference was detected in the frequencies of KIR2DL4*011 and 10A type KIR2DL4 allele between the ALL group and the control group (KIR2DL4*011: OR = 1.66, P = 0.01; 10A type KIR2DL4: OR = 0.42, P = 0.03), but was lost after P correction (Pc > = 0.05). No significant difference was detected in the frequencies of KIR2DL4 alleles, the 9A type KIR2DL4 and 10A type KIR2DL4 allele between the AML and CML patient groups compared with the control group (P > 0.05, Pc > 0.05). CONCLUSION The allelic diversity of the KIR2DL4 locus showed no significant association with leukemia among ethnic Hans from southern China.
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PMID:[Association of polymorphisms of KIR2DL4 gene with leukemia among ethnic Hans from southern China]. 2941 75