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M L Lokki

Publications and source records attributed to M L Lokki.

At least 19 recordsLinked to original sources

Human MHC region harbors both susceptibility and protective haplotypes for coronary artery disease.

Aiming to study the role of human major histocompatibility complex (MHC) region on coronary artery disease (CAD), we enrolled two separate patient materials and controls. First, heart transplantation recipients (n = 276) were divided into three subgroups according to the severity of atherosclerosis. The human leukocyte antigen (HLA)-A-B-DR haplotype and gene frequencies were compared between groups. Second, patients with acute coronary syndrome (ACS) (n = 100) and healthy controls (n = 74) were assessed by nine genetic MHC markers (HLA-A, HLA-B, HLA-DRB1, LTA+253(a/g), LTA+496(C/T), LTA+633(c/g), LTA+724(C/A), C4A and C4B), and the frequencies were compared. In the heart transplantation recipients, HLA-DR1 was strongly associated with CAD [severe vs no evidence, odds ratio (OR) 2.37; 95% confidence interval (CI) 1.33-4.25; P = 0.003]. Similarly, in the patients with ACS, HLA-DRB1*01 was associated with CAD (patients vs controls, OR 2.36; 95% CI 1.25-4.44; P = 0.007). HLA-DRB1*01 was associated with low-density-lipoprotein cholesterol (OR 5.32; 95% CI 1.64-17.26; P = 0.005) and smoking habit (OR 3.13; 95% CI 1.09-9.03; P = 0.035) as risk factors. The strongest protective gene was HLA-B*07 alone (OR 0.46; 95% CI 0.24-0.88; P = 0.02) or together with the haplotype LTA+253a-LTA+633g-C4A3-C4B1 (OR 0.36; 95% CI 0.22-0.57; P = 0.00001). In conclusion, human MHC region harbors genes that protect from and predispose to CAD.

Adult↗

Complement C4 deficiency and HLA homozygosity in patients with frequent intraoral herpes simplex virus type 1 infections.

Three consecutive patients with no apparent immunodeficiency who had frequent intraoral herpes simplex type 1 recurrences, a rare complication of herpes simplex virus infection, were found to have a total deficiency of either the A or B isotype of the complement component C4 and to be homozygous for the studied HLA antigens. A combination of HLA homozygosity, which may lead to impaired T cell recognition of viral peptides, and deficiency in the classical complement pathway, which can compromise virus neutralization, may predispose to severe and frequent herpes simplex virus infections.

Adult↗

Role of major histocompatibility complex class III genes in recurrent spontaneous abortions.

Increased parental Human Leukocyte Antigen (HLA) sharing has been repeatedly reported in recurrent spontaneous abortions (RSA). Parental HLA sharing increases the chance of feto-maternal histocompatibility and potentially affects maternal allo-recognition of the fetus. However, strong linkage disequilibrium across the whole Major Histocompatibility Complex (MHC) region makes it difficult to interpret parental HLA sharing conclusively. It is not known whether the shared HLA gene as such or an unknown gene(s) in linkage disequilibrium or a combination of several loci are causing the disease. Interestingly, in mouse and rat MHC-linked, recessive genes are known to control the reproduction, development and growth of the fetus. Human analogs have not been identified. Compared to HLA genes, MHC Class III has been studied much less in RSA. However, there are some observations of an increased number of unexpressed complement C4 alleles in RSA spouses. Complement C4 genes are located in a chromosomal region characterized by extremely high gene density and frequent gene rearrangements. C4 "null" alleles can act as markers of gene rearrangements in Class III unfavorable for pregnancy outcome. Many of the novel genes located in this region by sequencing serve as new candidates for RSA, since they have housekeeping functions and some of them are highly expressed in human reproductive organs.

Abortion, Habitual↗

A candidate gene for psoriasis near HLA-C, HCR (Pg8), is highly polymorphic with a disease-associated susceptibility allele.

A susceptibility gene for psoriasis, a chronic skin disorder, resides in chromosome 6p near the HLA-C locus. Sequencing of the region has allowed the identification of a new gene, HCR. We found that HCR is highly polymorphic with at least 12 coding variants. An association study of the new HCR polymorphisms and the previously suggested susceptibility alleles HLA-Cw*0602 and corneodesmosin allele 5 (CD*5) with psoriasis revealed a specific HCR variant associated with psoriasis susceptibility. However, the HLA-Cw*0602 allele was rarer in controls and associated with a stronger relative risk. Association analysis did not support CD*5 as a psoriasis susceptibility allele in our sample of patients (n = 100) and population-matched controls (n = 93) from an isolated population. We found HCR to be overexpressed in keratinocytes of psoriatic lesions compared with paired samples of healthy skin. Our results suggest a potential role for HCR in the pathogenesis of psoriasis.

Adolescent↗

Deficiency of human complement protein C4 due to identical frameshift mutations in the C4A and C4B genes.

The complement protein C4, encoded by two genes (C4A and C4B) on chromosome 6p, is the most polymorphic among the MHC III gene products. We investigated the molecular basis of C4 deficiency in a Finnish woman with systemic lupus erythematosus. C4-specific mRNA was present at low concentrations in C4-deficient (C4D) patient fibroblasts, but no pro-C4 protein was detected. This defect in C4 expression was specific in that synthesis of two other complement proteins was normal. Analysis of genomic DNA showed that the proposita had both deleted and nonexpressed C4 genes. Each of her nonexpressed genes, a C4A null gene inherited from the mother, a C4A null gene, and a C4B null gene inherited from the father, all contained an identical 2-bp insertion (TC) after nucleotide 5880 in exon 29, providing the first confirmatory proof of the C4B pseudogene. This mutation has been previously found only in C4A null genes. Although the exon 29/30 junction is spliced accurately, this frameshift mutation generates a premature stop at codon 3 in exon 30. These truncated C4A and C4B gene products were confirmed through RT-PCR and sequence analysis. Among the possible genetic mechanisms that produce identical mutations is both genes, the most likely is a mutation in C4A followed by a gene conversion to generate the mutated C4B allele.

Adult↗

Homozygous deletion of the CYP21A-TNXA-RP2-C4B gene region conferring C4B deficiency associated with recurrent respiratory infections.

The central class III region of the human major histocompatibility complex contains highly polymorphic genes that are associated with immune disorders and may serve as susceptibility factors for viral infections. Many HLA haplotype specific rearrangements, duplications, conversions and deletions, occur frequently in the C4 gene region. Genetic deficiencies of complement components are associated with recurrent occurrence of bacterial infections. We have studied the complement profile and the class III genes 5'-RP1-C4A-CYP21A-TNXA-RP2-C4B-CYP21B-TNXB -3' in a 4-year-old Caucasian patient. He has suffered from several pneumonias caused by respiratory viruses, eight acute otitis media, prolonged respiratory infections and urinary tract infection. Complement C4 was constantly low, but the other complement components, from C1 to C9, C1INH, factor B and properdin, were within normal limits. Immunological evaluation gave normal lymphocyte numbers and functions with the exception of subnormal T cell response to pokeweed mitogen. Molecular studies of the C4 gene region in the patient revealed homozygous deletion of CYP21A-TNXA-RP2-C4B generating total deficiency of C4B and the flanking 5' region up to C4A, and in the father a missing CYP21A gene. Further investigations are needed to elucidate the relationship between C4B deficiency and susceptibility to infections.

Adult↗

Molecular heterogeneity in deficiency of complement protein C2 type I.

Deficiency of the complement protein C2 (C2D), one of the most common genetic deficiencies of the complement system, is associated with rheumatological disorders and increased susceptibility to infection. Two types of C2D have been recognized, each in the context of specific major histocompatibility complex (MHC) haplotypes; type I, a deletion, frameshift and premature stop codon resulting in absence of detectable C2 protein synthesis, and type II, missense mutations resulting in a block in secretion of C2 proteins. Analysis of C2 expression in a child with C2 deficiency, a MHC haplotype different from those associated with type I or II C2D, and recurrent infections revealed additional molecular heterogeneity among C2 deficient patients. No detectable C2 protein was synthesized in the child's fibroblasts under conditions supporting C2 synthesis and secretion in normals and the child's C2 mRNA was reduced to 42% of normal. Nucleotide sequencing of RT-PCR fibroblast mRNA and genomic DNA revealed a type I C2 deficiency (28 base-pair deletion) on one allele and a previously unrecognized two base-pair deletion in exon 2 on the other. Expression of the closely linked factor B gene was markedly decreased (Bf mRNA 25% of normal), though Bf was up-regulated appropriately by interferon-gamma and the flanking sequence containing the Bf promoter was normal in this C2-deficient patient. Moreover, the concentration of Bf protein was normal in the patient's plasma.

Bacteremia↗

Type II human complement C2 deficiency. Allele-specific amino acid substitutions (Ser189 --> Phe; Gly444 --> Arg) cause impaired C2 secretion.

Type II complement protein C2 deficiency is characterized by a selective block in C2 secretion. The Type II C2 null allele (C2Q0) is linked to two major histocompatibility haplotypes (MHC) that differ from the MHC of the more common Type I C2 deficiency. To determine the molecular basis of Type II deficiency the two Type II C2Q0 genes were isolated and transfected separately into L-cells. Subsequent molecular biology, biosynthetic, and immunofluorescence studies demonstrated that C2 secretion is impaired in Type II C2 deficiency because of different missense mutations at highly conserved residues in each of the C2Q0 alleles. One is in exon 5 (nucleotide C566 --> T; Ser189 --> Phe) of the C2Q0 gene linked to the MHC haplotype A11,B35,DRw1,BFS, C4A0B1. The other is in exon 11 (G1930 --> A; Gly444 --> Arg) of the C2Q0 gene linked to the MHC haplotype A2,B5, DRw4,BFS,C4A3B1. Each mutant C2 gene product is retained early in the secretory pathway. These mutants provide models for elucidating the C2 secretory pathway.

Alleles↗

Inherited complement C3 deficiency: reduced C3 mRNA and protein levels in a Laotian kindred.

To determine the molecular basis of complement C3 deficiency in a Laotian kindred, the homozygous C3-deficient male propositus was studied. By ELISA, this individual's serum was determined to contain approximately 4 microg/ml C3 (0.3% of normal). In accord with this result, anti-C3 immunoprecipitation of [35S]-methionine-labeled fibroblasts from this C3D individual revealed pro-C3 of normal size (180,000 Mr), but in significantly reduced amounts (approximately 1% of normal fibroblasts), that was processed and secreted with normal-size alpha- and beta-chains. In addition, C3-specific mRNA of normal size (5.2 kb) but in reduced quantity (approximately 1% of normal) was detected in this individual's fibroblasts by Northern analysis. The nucleotide sequence of the transcriptional initiation site, the promoter, and the IL-1beta/IL-6 cis-regulatory elements of the C3-deficient gene are normal in this C3-deficient individual, indicating that the low C3 mRNA and protein levels are not caused by reduced C3 transcription that is the result of a cis-mutation. Moreover, cDNA sequencing studies revealed no defect in the C3-deficient mRNA, including the areas mutated in four previously characterized C3-deficient patients. These data indicate that (1) C3 protein deficiency in this Laotian patient results from reduced levels of C3-specific mRNA, (2) the small amount of expressed C3 protein is processed and secreted normally from the deficient cells, and (3) the molecular genetic defect(s), although not yet delineated, is different from those described in other C3-deficient individuals, thereby providing additional evidence for numerous mutations that cause inherited C3 deficiency in humans.

Cells, Cultured↗

Prognostic significance of complement alleles Bf and C4 in early rheumatoid arthritis.

The prognostic significance of class III major histocompatibility complex complement components, factor B (Bf), C4A and C4B, were studied in a 3-year prospective study of 73 patients with early RA. Patients with C4B null allele had higher disease activity with more radiological progression than patients with C4A null allele or patients without null allele. C4B null allele also associated with increased susceptibility to side effects from antirheumatic treatment. The Bf phenotypes did not associate with the severity of RA. C4B null allele may have prognostic significance in determining a special subgroup of RA patients with a more complicated course of the disease.

Adult↗

Unique HLA antigen frequencies in the Finnish population.

The Finnish Bone Marrow Donor Registry was established 1992 to serve Finnish patients in urgent need of bone marrow transplantation. This study details the HLA antigen frequencies, including those of the A 19 subtypes, in the Finnish population. Large regional variations were found in antigen frequencies between the different geographical areas of Finland. In particular, antigens A9, B12, B35, Cw4 and DR3 display regional frequency deviations, but B7, B8 and B15 also exhibit regional variations. The present population is the largest (n = 10,000) ever HLA-typed in Finland. 97% of the donors were HLA-A-B-DR typed. Confirmation of the serological HLA type was performed by DNA typing on 3% of the donors in the registry. A potential donor was found for 52% of Finnish patients in need of a matched unrelated donor for a bone marrow transplantation. Due to the ethnic origin of the Finns, it is not easy to find suitable bone marrow donors for Finnish patients in worldwide registries. It is thus important to maintain a national bone marrow donor registry which recruits donors from all over the country.

Finland↗

Genetic deficiencies of complement.

Genetic deficiencies of proteins of the complement system are associated with diverse clinical phenotypes. These clinical manifestations vary as a function of the specific component that is missing. Molecular and cellular biological methods, coupled with more intensive clinical studies, have defined the pathophysiological basis for this set of genetic disorders. Insights into the normal function of complement and its role in immunopathology have been derived from the extensive work in this field during the past few years.

Complement C1↗

HLA antigens and complement C4 allotypes in patients with chronic biologically false positive (CBFP) seroreactions for syphilis: a follow-up study of SLE patients and CBFP reactors.

We report a follow-up of our previous study of HLA markers in 118 unrelated patients: 49 with definite systemic lupus erythematosus (SLE) (group 1), 32 with definite or probable SLE and chronic biologically false positive (CBFP) seroreactions for syphilis (group 2), and 37 CBFP reactors (group 3). Definite SLE was confirmed in 28 (90.3%) of the patients in group 2, equally in HLA B8- and HLA B7-positive patients. Three of the CBFP reactors developed SLE, two (40%) out of five HLA B8-positive as compared to one (6.6%) out of 15 HLA B7-positive CBFP reactors (P = 0.07). Fourteen patients died (groups 1 and 2). Eight of the 24 HLA B8-positive patients died in contrast to one of the 20 HLA B7-positive patients (P < 0.02). Of the CBFP reactors, 70.9% had complement C4 null alleles as compared to 47.9% in controls (P = 0.05) and 50% had C4A null alleles as compared to 17.8% in controls (P < 0.05). C4B null alleles were found in 28.6% (28.6% in controls, P is not significant). The null alleles for C4A were not solely in a linkage disequilibrium with the HLA B8 DR3 haplotype. CBFP reactors with C4A null alleles had a higher risk of developing SLE, lupus-like disease or symptoms such as photosensitivity, cutaneous vasculitis and/or autoantibodies than did those with no C4A null alleles (P < 0.02).

Adolescent↗

Tumour necrosis factor B gene polymorphism in relation to complotype in couples with spontaneous abortions and in control families.

NcoI restriction fragment length polymorphism (RFLP) of the tumour necrosis factor B (TNFB) gene gives two allelic fragments of 5.5 and 10.5 kb, corresponding to the TNFB*1 and TNFB*2 alleles, respectively. The frequencies of these alleles were analysed in 121 healthy Finns and 56 Finnish couples suffering from recurrent spontaneous abortions (RSA). In the healthy Finns the frequency of TNFB*1 was 37% and that of TNFB*2 63%, of which the frequency of TNFB*1 was significantly increased compared with the Danish population. No deviation was seen between the RSA couples and the Finnish controls. TNF genes are located in major histocompatibility complex class III region close to complement (BF, C4A and C4B) genes. Some complotypes associated most often with the TNFB*1 (S01, S30, S02) and some (S31, F320) with the TNFB*2 allele in the healthy Finns. The combination of the TNFB and the C4 'null' allele differed between the RSA couples and the Finnish controls.

Abortion, Habitual↗

Major histocompatibility complex located complement C4 and steroid 21-hydroxylase gene rearrangements in couples with recurrent spontaneous abortions.

Major Histocompatibility Complex (MHC) class III located complement C4 and steroid 21-hydroxylase (21OH) genes, which form various deletion and duplication units, were studied by TaqI Restriction Fragment Length Polymorphism (RFLP) in 58 Finnish couples who suffered recurrent spontaneous abortions (RSA). The gene rearrangements found in the RSA couples did not differ from those in the controls.

Abortion, Habitual↗

Allelic differences in hemolytic activity and protein concentration of BF molecules are found in association with particular HLA haplotypes.

After separating the *F and *S alleles by electrophoresis the allele-specific hemolytic activity was detected by agarose overlay method using the programmable densitometer for scanning. The hemolytic activity of BF allotypes was analyzed from 81 individuals. In thirteen FS heterozygous serum samples BF F had lower hemolysis than BF S. Four FF homozygous samples also exhibited lower hemolysis than a homozygous control sample. The low hemolytic activity of F in FS heterozygotes was not due to decreased protein concentrations relative to S. On the contrary, BF F was associated with higher protein concentration than BF S. The relative quantitation of the allele specific BF protein was done by crossed immunoelectrophoresis. BF F with low hemolytic activity but with high protein concentration associated strongly with HLA B35 phenotype and the family material confirmed the association with the haplotypes A3, Cw4, B35, DR1, BFFB, C4A3BQO (or A2BQO, A3,2BQO). The results suggest that particular MHC haplotypes contain a factor B allele with encoding for poor hemolytic activity or that MHC haplotype specific regulatory elements affect pre- or post-translational activity levels.

Alleles↗

Increased frequency of complement C4 'null' alleles in recurrent spontaneous abortions.

Typings for major histocompatibility antigens HLA A, B, C and DR and for complement C4A, C4B and factor B were performed for 59 Finnish couples experiencing at least three consecutive recurrent spontaneous abortions (RSA). Forty-one of them were primary abortion (PA) couples with no children and 18 were secondary abortion (SA) couples who had one or two children before abortions. HLA sharing in A and B loci was slightly but significantly increased (15%, P less than 0.05) among RSA couples compared to the controls, as was DR sharing among SA couples compared to PA couples (50% versus 22%, P less than or equal to 0.05). The most interesting new finding, however, was the statistically significant increase of complement C4 functionally silent, i.e. C4 'null', alleles in RSA couples. C4 is a duplicated gene and its products differ in their functions in the complement cascade. C4A null alleles were equally increased in PA wives and in PA husbands (32%, P less than or equal to 0.05) compared to the controls (18%) and C4B null alleles in SA wives (56%, P less than or equal to 0.05) and in SA husbands (50%) compared to the controls (29%). Therefore, the offspring of RSA couples have a significantly increased risk of inheriting several null alleles. The majority, 95% (P less than 0.001) of PA couples and 83% of SA couples, had at least one C4A or C4B null in their phenotypes compared to 66% among Finnish controls.

Abortion, Habitual↗

Changes in plasma complement C4 and factor B allotypes after liver transplantation.

Plasma complement allotypes for C4 and factor B were determined in 21 patients before and after liver transplantation together with donor typing. In 17 transplantations allelic differences between the patient and the donor could be shown. In all cases the patient's C4 and factor-B types converted to that of the donor, showing that the liver is the major source of plasma complement C4 and factor B.

Adult↗