Inflammation plays a crucial role in Alzheimer's disease (AD). AD neurodegeneration and concurrent involvement of the peripheral immune system may promote leukocyte division and telomere shortening. We examined genotypes and plasma levels of two proinflammatory cytokines, IL-1beta and IL-18, and leukocyte telomere length (LTL) in patients with mild cognitive impairment (MCI) and AD. We wanted to determine whether changes in plasma IL-1beta and IL-18 levels, together with LTL shortening, could be diagnostic for disease progression from MCI to AD. Median plasma IL-1beta levels were in the order MCI patients (2.2 pg/ml) < AD patients (4.0 pg/ml), both of which differed significantly from the controls (0.0 pg/ml). In the AD patients, the lowest IL-1beta levels were associated with the presence of the C allele of IL-1beta rs16944 SNP. Median plasma IL-18 levels were in the order MCI patients (116.3 pg/ml) > AD patients (85.8 pg/ml), both of which were significantly higher than in the controls (17.6 pg/ml). Analysis of LTL showed a progressive reduction in the order controls > MCI > AD patients (p < 0.0001). Overall LTL reduction was correlated with increased plasma IL-1beta levels, substantiating the hypothesis that inflammatory processes secondary to neuroinflammation may trigger telomere attrition. Changes in plasma IL-1beta and Il-18 levels, and LTL seem to reflect shifts in AD stage; they may have potential use as blood biomarkers to monitor disease onset and progression from MCI to AD.
Studies investigating telomere length in association with cognitive decline, dementia, and sporadic Alzheimer's disease (AD) have frequently found shorter telomeres to be associated with the development of AD and telomerase expression with pathological processes in AD. Human telomerase is constituted by two components: the telomerase reverse transcriptase (TERT) and the telomerase RNA component (TERC). Genetic variation at the two loci has been investigated in relation to telomere length, longevity, and common diseases of advanced age, but not in relation to AD. We examined three polymorphisms of the TERT gene (VNTR MNS16A, rs2853691, rs33954691) and three polymorphisms of the TERC gene (rs12696304, rs3772190, rs16847897) in a sample of 220 AD patients and 146 controls. MNS16A LL genotype was found to be associated with an increased risk of AD only in males [interaction term adjusted OR = 3.55 (95% CI 12-10.2)]. The three TERC single nucleotide polymorphisms are in strict linkage disequilibrium and their genotype combinations influenced the age at AD onset (AAO).The combined genotype GG-TT-CC was associated with a mean AAO six years lower (70.5 +/- 6.7) than that associated with the other genotype combinations (76.04 +/- 6.7, p = 0.01).The fact that the MNS16 L allele has been reported to lower TERT expression, and that the TERC alleles G, T, C (rs12696304, rs3772190, rs16847897 in this order have been repeatedly found associated with shorter LTL, seems to corroborate the hypothesis of a role of telomere length and telomerase in AD susceptibility. (C) 2017 Elsevier Inc. All rights reserved.
Background: Variation at the cyclin-dependent kinase inhibitor gene P21 in a patient sample of the Italian population was investigated in search of genetic factors potentially involved in sporadic late-onset Alzheimer’s disease (AD). Methods: Two single nucleotide polymorphisms (SNPs) were studied in this gene: a C>A transversion at codon 31 (ser>arg) in exon 2 (RS1801270) and a C>T transition occurring 20 bp downstream from the stop codon of exon 3 (RS1059234). Results: The odd ratios were: RS1801270 A allele = 0.62 (95% CI = 0.33–1.18; p = 0.14); RS1059234 T allele = 0.57 (95% CI = 0.33–0.98; p = 0.04). In addition, a longer duration of disease was found with genotypes carrying the RS1059234 T allele (4.3 ± 2.5 years) than with those not carrying it (3.3 ± 2.1 years) (p = 0.001). Conclusion: In the present sample, one of the two SNPs seems in some way related to AD, since carriers of one allele were slightly protected against AD onset.
Angiotensin I-converting enzyme (ACE), in addition to its role in the renin angiotensin system, has a physiological function in the fibrinolysis pathway, the accurate control of which is critical for the normal development of pregnancy. Recently, the ACE I/D polymorphism was found to be associated with recurrent spontaneous miscarriages (RM). The present study analysed the relationship between ACE I/D polymorphism and the number of spontaneous miscarriages, the number of pregnancies and the number of children in a sample of 88 Italian women born before 1930, with a pre-modern reproductive behaviour. The ACE DD genotype was more prevalent among women with RM (p = 0.02). However, the women carrying the DD genotype not only had the highest number of miscarriages (p = 0.03), but also the highest number of pregnancies with an eventual complete fertility (children no = 4.4), similar to that of women carrying the other ACE genotypes. In contrast, published data on contemporary women with RM seem to indicate that the DD genotype could now be associated with a reduced reproductive success compared to the other ACE genotypes. It is suggested that this phenomenon may be the effect of the interaction between ACE genotypes and contemporary reproductive behaviours (delay in childbearing, below-replacement fertility).
The XbaI, EcoRI and the signal peptide insertion/deletion (I/D) polymorphic sites of APOB gene, the CfoI polymorphic site of apolipoprotein E gene (APOE), and the insertion/deletion polymorphism of angiotensin I-converting enzyme (ACE) gene were studied using polymerase chain reaction (PCR) in 55 postmenopausal women with coronary artery disease (CAD) and in 119 control women of equivalent age. Patients and controls were recruited from the population of Rome, considered representative of Central and Southern Italy. There were no significant differences in allele frequencies between the two groups, though APOB X-, R- and I, APOE*3, and ACE D alleles were slightly more frequent in the cases than in the controls. The patients did not differ from the controls for plasma total cholesterol (TC), HDL-cholesterol, LDL-cholesterol, and apoAI values, while they presented significantly higher levels of triglycerides and apoB, and lower apoE levels. TC, apoE, and apoB quantitative values, adjusted for age, varied significantly among APOB XbaI and APOE genotypes. APOB X-X- genotype was associated in patients with a significantly lower mean TC concentration than the other two genotypes pooled together. APOE 3-2 genotype in the controls had significantly lower TC levels with respect to the other two pooled genotypic classes and higher apoE levels compared to 3-3 and 4-3 genotypes. In the patients, 3-2 genotype had significantly lower apoB levels than the pooled 3-3 and 4-3 class. We conclude that in the Italian women the DNA polymorphisms studied in this work do not seem to be important risk factors for CAD occurrence; that apoE quantitation could be another useful parameter to identify subjects at risk of CAD; and that APOB X- and APOE*2 are the alleles that most influence the interindividual plasma lipid variation among CAD female patients.
BACKGROUND AND AIM:The human peroxisome proliferator-activated receptor gamma (PPAR-gamma) is involved in lipid storage, glucose homeostasis and adipocyte differentiation. The Ala allele of the Pro12Ala polymorphism has been associated with a protective effect against T2DM. Ala allele frequencies are known for many populations, but data are absent for other interesting human groups. METHODS AND RESULTS:We examined samples from Ethiopia, Benin, Ecuador and Italy. In addition, we performed an analysis of the Pro12Ala polymorphism distribution in world populations, also in relation to T2DM prevalence and the diet lipid content. In the European populations, the Ala allele frequencies are distributed according to a latitudinal trend, with the highest in the northern and central European populations and the lowest in the Mediterranean populations. Considering the world populations, a significant inverse relationship between Ala frequency and T2DM prevalence was observed mainly in populations where energy from lipids exceeded 30% of the total energy intake. CONCLUSION:Northern Europe's cold climate has been hypothesised to have played a role in contributing to the present pattern. Moreover our analysis appears to confirm, at a population level, the protective effect of Ala allele against T2DM, already observed in case-control studies, but only in populations with a diet rich in lipids.
The estrogen receptor (ER) plays an important role in mediating estrogen action on target tissues. ER-alpha, the most abundant, is found in all human reproductive tissues and studies on alpha-ER knockout mice have highlighted its role in reproduction. ER-alpha gene (ESR1) polymorphisms have been associated with a variety of disorders including human infertility. In this study, we examined the association of ESR1 PvuII and XbaI polymorphisms with fertility in two populations with different reproductive patterns and precisely in a sample of healthy Italian men and women (n=178) and in a sample of healthy African-Ecuadorian women (n=57). ESR1 xx and ppxx genotypes among the Italian men were found to be associated with an above-median number of children (P=0.01 and P=0.004, respectively). ESR1 pp genotype among the Italian women showed a tendency to be associated with a lower number of abortions (P=0.04), whereas ESR1 pp and ppxx genotypes among African-Ecuadorian women were associated with a higher number of children (P=0.02 and P=0.03, respectively). These results are consistent with previous observations indicating a role of ESR1 genotypes in human infertility and give insight into the complex interactions between genotypes and reproductive behaviours in human populations.
The human apoE gene (APOE, GenBank accession AF261279) shows a common polymorphism, with the three epsilon2, epsilon3 and epsilon4 alleles resulting from the haplotypes of two C-->T SNPs. However, whereas the three common T-T, T-C and C-C haplotypes corresponding to the epsilon2, epsilon3 and epsilon4 alleles are well known, the last C-T haplotype (GenBank accession AY077451), encoding a fourth apoE allele, has rarely been reported. We detected this fourth allele in a Caucasian patient with motor neuron disease (MND). According to the literature we refer to this allele as epsilon3r. Although several explanations may be proposed for its formation, the existence of this fourth allele is consistent with the evolutionary hypothesis generally accepted for the apoE alleles. The rarity and physiological role of epsilon3r remains to be explained, and requires further investigation.
Human apolipoprotein E is the most important supplier of the cholesterol precursor for steroid hormone production in steroidogenic tissues and therefore could play a role in the regulation of steroid hormone function and influence human reproduction. This hypothesis has been confirmed by studies describing a differential fertility associated with common apolipoprotein (APOE) genotypes in two European populations. In the present investigation the impact of APOE genetic variation on fertility was studied in two Ecuadorian populations, African-Ecuadorians (57 women) and Cayapa Indians (27 women). In addition some biodemographic variables concerning women's fertility were investigated (124 African-Ecuadorian women; 40 Cayapa women) to better understand the APOE-fertility relationships in these pre-industrial populations. General fertility rates in both populations were very high (6.5 and 6.2 for the African-Ecuadorians and for the Cayapa respectively). When considering only women near the end of reproductive life (>/=40 years), a more marked difference was observed between the two groups (9.1 versus 7.7, P=0.09). In both communities, the highest number of children was found to be associated with the e*4/e*3 genotype; the e*4/e*3 genotype frequency (0.50) in the African-Ecuadorian women with 9-17 children was about three times that of the women with 0-8 children (0.14) (P=0.02). The present findings are at variance with those observed in European populations, where e*3/e*3 was the genotype associated with the highest reproductive efficiency. A possible explanation for this inconsistency could be due to the different functional properties associated with the e*3 and e*4 alleles and to genotype interactions with environmental factors including reproductive strategies.
A sample of 243 Italian patients affected by the sporadic late-onset form of Alzheimer’s disease (AD) was studied for the HindIII intronic polymorphism of the lipoprotein lipase (LPL) gene and compared with a sample of 148 healthy subjects. Since this polymorphism has been reported to be associated with CAD and because the two pathologies share common aspects, we decided to study it in AD too. We found a difference in the allele distribution, in that the H+ allele was more frequent in patients (0.782) than in controls (0.720); this difference was not quite significant (P = 0.059). The odds ratio from the logistic regression analysis for the H+ carrying genotypes was 2.7 (95% CI = 1.01–7.21; P = 0.048). When the separate genotypes H+H+ and H+H− were entered into the analysis, only H+H+ was found to significantly increase the risk with respect to H−H− (P = 0.029). This means that carrying this allele significantly increases the risk of developing AD, and the risk is mostly associated with the H+H+ genotype.
OBJECTIVE:To investigate the possible impact of apolipoprotein E (APOE) polymorphism on reproductive efficiency. DESIGN:Population study. SETTING:University Departments and a Laboratory of National Research Council. PATIENT(S):One hundred sixty healthy unrelated subjects of postreproductive age. INTERVENTION(S):Peripheral blood collection and questionnaire administration. MAIN OUTCOME MEASURE(S):Apolipoprotein E genotypes were detected after PCR amplification and CfoI digestion; plasma total cholesterol was assayed. RESULT(S):The mean number of children of e*2 allele carriers (2.4) was lower than that of e*3/e*3 and e*4/e*3 subjects (3.9). The trend was similar (2.8 vs. 4.8) when the number of pregnancies was considered. Moreover, there was a clear inverse relationship between number of children and e*2-carrying genotype proportions (chi(2) for trend = 6.3). Conversely, the e*3/e*3 genotype was associated with the highest number of children and pregnancies (3.9 and 4.9, respectively), and the e*4/e*3 genotype, with intermediate values (3.7 and 4.4). Carriers of e*2 allele also showed the lowest levels of total cholesterol. CONCLUSION(S):The e*2 allele seems to be associated with the lowest reproductive efficiency and the e*3 allele, with the highest. The different total cholesterol levels associated with APOE genotypes could have an effect on steroidogenesis and determine as a consequence the observed differential fertility.
A previous investigation on apolipoprotein E polymorphism in the Ethiopian population highlighted the presence of a further variant allele named E*5 in addition to the three common alleles. The variant is considered rare elsewhere but has a frequency of more than 1% in this population. Now characterized by gene sequencing and restriction isotyping in many members of the families of the original carriers, the variant isoform has actually been found to be determined by two different gene mutations. Effectively rare in Ethiopians, one of the two, E5 (Gln204Lys, Cys 112Arg), has never been described before. The other, E5 (Glu212Lys), previously described in a subject of Turkish origin, is present at the polymorphic level only in the Ethiopian population. No subjects bearing these variants had anomalous lipid or apolipoprotein patterns. In the course of the present investigation both have been found to occur as rare variants in the southern Italian population as well. The occurrence of the two variants in the populations of Ethiopia and of the Mediterranean basin could be explained by taking into account the relevant Caucasoid contribution to the Ethiopian gene pool.
The physiological role of human paraoxonase (PON), a serum enzyme that hydrolyzes organophosphate insecticides and nerve agents, is not clear. Of the three genes in the paraoxonase gene family, PON1 shows a polymorphism, Gln 192 --> Arg, governed by two common alleles named *Q and *R. These determine two different isoforms associated, respectively, with lower and higher activity towards paraoxon, a toxic metabolic product of the insecticide parathion. The *R allele has often been found associated with an increased risk of coronary heart disease. As human populations tend towards greater exposure to environmental changes, including changes in dietary habits and contact with insecticides or other toxic substances, health risks will change as well. In studying the prevention of these newly emerging risks, it could be important to know the distribution of the two alleles in the various world populations. In this paper we report on the genotype and allele frequencies of this polymorphism in different populations, most of which have never been examined for this polymorphism. Samples were taken from mainland Italy, Sardinia, Ethiopia, Benin, and Ecuador. The *R allele frequencies for the samples were: 0.313, 0.248, 0.408, 0.612, and 0.789, respectively. The data show a large variability in allele frequencies, and, in particular, that PON1 allele distribution depends on membership to different geographic populations.
The paraoxonase (PON1) Gln192→Arg polymorphism was examined in a group of sporadic late-onset Alzheimer's disease (AD) patients, in a group of coronary artery disease (CAD) patients, and in normal subjects. The AD sample showed a PON1*R allele frequency significantly lower than the control group (0.225 vs. 0.281, P=0.049). In the CAD patients the *R allele was more frequent than in the controls (0.230 vs. 0.213), though not significantly (P=0.28). The odds ratios (OR) adjusted for age, gender, and APOE polymorphism by logistic regression analysis highlighted that in AD the PON1 RR genotype was significantly protective (OR=0.41, 95% CI=0.19–0.90; P=0.025), whereas in CAD it appeared to be a significant risk factor (OR=5.11, 95% CI=1.09–23.9; P=0.038) limited to younger patients.
The search for further variation at the APOE gene in a sample of patients with sporadic late-onset Alzheimer's disease (AD) and related controls revealed two different mutations in the exon 3 of the gene. One, the Leu28-->Pro, always found on an APOE e(*)4 allele, was present in five of the 94 patients and in 1 of the 157 controls. The other, Thr42-->Ala, found on an e(*)3 allele, was observed in only one AD patient, who also carried the Leu28-->Pro, but in none of the controls. In the AD patient group the allele e(*)4(-), corresponding to Leu28-->Pro, showed a frequency of 0.027, compared with only 0.003 in the controls. Compared to E3/3 and E3/2 genotypes, the risk of developing AD associated with the genotypes carrying the e(*)4 allele, the well-established risk allele for AD onset, was observed to be high (OR=3.16; 95% CI=1.62-6.20; P=0.0009), but the risk associated with genotypes carrying the Leu28-->Pro mutation was higher still (OR=10.95; 95% CI=1.25-95.75; P=0.015). The higher risk associated with this mutation was assessed by meta-analysis carried out using the data of three patient groups from a previously published study Kamboh et al. and from our study. The results indicated that, compared with all the other APOE genotypes, those carrying the Leu28-->Pro mutation were at a substantially higher risk of developing AD (OR=4.25; 95% CI=1.21-14.97).
We explored the spatial distribution of human Y chromosomal diversity on a microgeographic scale, by typing 30 population samples from closely spaced locations in Italy and Greece for 9 haplogroups and their internal microsatellite variation. We confirm a significant difference in the composition of the Y chromosomal gene pools of the two countries. However, within each country, heterogeneity is not organized along the lines of clinal variation deduced from studies on larger spatial scales. Microsatellite data indicate that local increases of haplogroup frequencies can be often explained by a limited number of founders. We conclude that local founder or drift effects are the main determinants in shaping the microgeographic Y chromosomal diversity.
The acute-phase "panproteinase" inhibitor alpha2-macroglobulin (alpha2M), a protein involved in inflammatory reactions, has been identified in amyloid plaques in Alzheimer's disease (AD). In addition, alpha2M is involved in AD susceptibility at the genetic level, and a deletion polymorphism at the a2M gene has been found to be associated with sporadic AD. We analyzed the deletion polymorphism and alpha2M plasma levels in 93 ultraoctuagenarian patients with late-onset sporadic AD and in controls (n=157). alpha2M allele frequencies did not differ between AD patients (alpha2M*2=0.169) and controls (alpha2M*2=0.146). The mean plasma concentrations of alpha2M were similar in patients (271.8+/-79 mg/dl) and controls (269.5+/-81.2 mg/dl). No difference was found in the alpha2M mean plasma levels associated with the three alpha2M genotypes, indicating that the deletion has no effect on alpha2M protein level. However, in AD patients alpha2M mean plasma values differed significantly according to apolipoprotein E genotypes (p=0.03), with E3/E3 homozygotes showing the highest levels. Since in a previous work E3/E3 were found to be associated with the highest plasma levels of alpha1-antichymotrypsin, another acute-phase protein, the present findings seem to support the hypothesis that inflammation may be a relevant factor in AD pathogenesis peculiar to E3/E3 subjects.