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Carbohydrate restriction improves the features of Metabolic Syndrome. Metabolic Syndrome may be defined by the response to carbohydrate restriction.

Metabolic Syndrome (MetS) represents a constellation of markers that indicates a predisposition to diabetes, cardiovascular disease and other pathologic states. The definition and treatment are a matter of current debate and there is not general agreement on a precise definition or, to some extent, whether the designation provides more information than the individual components. We consider here five indicators that are central to most definitions and we provide evidence from the literature that these are precisely the symptoms that respond to reduction in dietary carbohydrate (CHO). Carbohydrate restriction is one of several strategies for reducing body mass but even in the absence of weight loss or in comparison with low fat alternatives, CHO restriction is effective at ameliorating high fasting glucose and insulin, high plasma triglycerides (TAG), low HDL and high blood pressure. In addition, low fat, high CHO diets have long been known to raise TAG, lower HDL and, in the absence of weight loss, may worsen glycemic control. Thus, whereas there are numerous strategies for weight loss, a patient with high BMI and high TAG is likely to benefit most from a regimen that reduces CHO intake. Reviewing the literature, benefits of CHO restriction are seen in normal or overweight individuals, in normal patients who meet the criteria for MetS or in patients with frank diabetes. Moreover, in low fat studies that ameliorate LDL and total cholesterol, controls may do better on the symptoms of MetS. On this basis, we feel that MetS is a meaningful, useful phenomenon and may, in fact, be operationally defined as the set of markers that responds to CHO restriction. Insofar as this is an accurate characterization it is likely the result of the effect of dietary CHO on insulin metabolism. Glucose is the major insulin secretagogue and insulin resistance has been tied to the hyperinsulinemic state or the effect of such a state on lipid metabolism. The conclusion is probably not surprising but has not been explicitly stated before. The known effects of CHO-induced hypertriglyceridemia, the HDL-lowering effect of low fat, high CHO interventions and the obvious improvement in glucose and insulin from CHO restriction should have made this evident. In addition, recent studies suggest that a subset of MetS, the ratio of TAG/HDL, is a good marker for insulin resistance and risk of CVD, and this indicator is reliably reduced by CHO restriction and exacerbated by high CHO intake. Inability to make this connection in the past has probably been due to the fact that individual responses have been studied in isolation as well as to the emphasis of traditional therapeutic approaches on low fat rather than low CHO. We emphasize that MetS is not a disease but a collection of markers. Individual physicians must decide whether high LDL, or other risk factors are more important than the features of MetS in any individual case but if MetS is to be considered it should be recognized that reducing CHO will bring improvement. Response of symptoms to CHO restriction might thus provide a new experimental criterion for MetS in the face of on-going controversy about a useful definition. As a guide to future research, the idea that control of insulin metabolism by CHO intake is, to a first approximation, the underlying mechanism in MetS is a testable hypothesis.

Journal Article↗

Analysis of the T cell receptor V alpha repertoire in Hashimoto's thyroiditis: evidence for the restricted accumulation of CD8+ T cells in the absence of CD4+ T cell restriction.

There has been considerable interest in the possible restriction of the TCR repertoire in autoimmune disorders, because it would have important therapeutic implications. Using ribonucleic acid derived from matched peripheral blood lymphocytes (PBL), intrathyroidal lymphocytes (ITL), and CD4- and CD8-selected ITL from three patients with Hashimoto's thyroiditis (HT), we carried out reverse transcription-PCR analysis of TCR V alpha family usage. No evidence was found for V alpha family restriction in the PBL, ITL, CD4-selected ITL, or CD8-selected ITL. However, restriction was frequent in the CD8-selected ITL after denaturation/reannealing of the PCR products followed by nondenaturing PAGE; similar restriction was uncommon in PBL, CD8-selected PBL, ITL, or CD4-selected ITL. V alpha 3 and V alpha 6 TCR chains from CD8-selected ITL bands from one patient were cloned and sequenced. There was marked sequence restriction, particularly within the ITL V alpha 6 TCR chains, in which 14 of 15 homoduplex band sequences used the J4 segment and had an identical V/N/J junction amino acid (but not nucleotide) sequence. Sequence restriction was not detected in matched CD8-selected PBL material. These data show that there is a marked restriction of V alpha chain usage in the CD8+ (but not CD4+) T cells in the Hashimoto's thyroid, with clonal expansion of some sequences.

Adult↗

T cell regulation of B cell activation: MHC-restricted T augmenting cells enhance the B cell responses mediated by MHC-restricted cloned T helper cells.

The present studies demonstrated that unprimed populations of Lyt-1+2- T cells are able to augment the responses generated by optimal numbers of antigen-specific and MHC-restricted cloned TH cells. The TA cells function early in the course of B cell responses. Responses mediated by (A X B)F1 (B + accessory) cells and parentA restricted cloned TH cells are augmented by TA cells from (A X B)F1 leads to parentA radiation bone marrow chimeras, but not by TA cells from (A X B)F1 leads to parentB chimeras. Thus, TA cell activation and function are MHC-restricted, but this restriction is not related to recognition of genotypically expressed B cell and/or accessory cell MHC products alone. Rather, TA cell function is intimately related to the MHC-restricted interaction between TH cells and responding (B + accessory) cells. Specifically, it was shown that TH cell interaction with B cells via an MHC-restricted and carrier-hapten-linked pathway is required for the function of TA cells expressing the same MHC restriction. Moreover, neither MHC homology nor TH cell recognition of MHC determinants on TA cells is required for TA cell function, and the activity of TA cells is not demonstrably influenced by non-MHC genes. It was further demonstrated that the function of cloned TH cells in B cell activation consists of at least two distinct components, one is radiosensitive and the other is radioresistant. TA cells are able either to replace the radiosensitive function of cloned TH cells directly or to bypass this requirement through an alternative pathway.

Animals↗

Critical role of oxalate restriction in association with calcium restriction to decrease the probability of being a stone former: insufficient effect in idiopathic hypercalciuria.

The probability of being a stone former (PSF) was calculated according to the method of Robertson in three groups of idiopathic calcium stone formers (normocalciuria (NCa), dietary hypercalciuria (DH) and idiopathic hypercalciuria (IH] during four conditions: on a free diet; on a calcium and oxalate restricted diet for four days and after an oxalate load (200 g of spinach) while on a calcium unrestricted or calcium restricted diet. Combined calciuria (Ca) and oxaluria (Ox) restriction significantly decreased PSF only in NCa and DH whereas the decrease was not significant in IH because of a concomitant significant increase in oxalate excretion. Increase of PSF with the oxalate load was significantly greater on calcium restricted than on calcium unrestricted diets in all groups of patients (4-6-12 times greater in NCa, DH and IH respectively). This shows the critical role of oxalate restriction when calcium is restricted in order to decrease the PSF. Combined restriction is not sufficient in idiopathic hypercalciuric patients to decrease their probability of stone formation.

Calcium↗

DNA sequence variation and phylogenetic relationships among strains of Pseudomonas syringae pv. syringae inferred from restriction site maps and restriction fragment length polymorphism.

We evaluated the restriction fragment length polymorphism of genomic DNA among 53 strains of the phytopathogenic bacterium Pseudomonas syringae pv. syringae. Twenty-nine strains were isolated from beans, and the rest were isolated from 11 other hosts. Southern blots of DNA digested with EcoRI or HindIII were hybridized to two random probes from a cosmid library of P. syringae pv. syringae and a hrp (hypersensitive reaction and pathogenicity) cluster cloned from P. syringae pv. syringae. The size of hybridizing fragments was determined, and a similarity matrix was constructed by comparing strains on a pairwise basis for the presence or absence of fragments. The proportion of shared fragments was then used to estimate sequence divergence. Dendrograms were produced by using the unweighted pair group method with averages and the neighbor-joining method. For the hrp region, BamHI, EcoRI, EcoRV, and HindIII restriction sites were mapped for six representative bean strains and used to construct EcoRI and HindIII restriction maps for all 30 strains pathogenic on beans. Restriction mapping revealed the presence of a 3-kb insertion in nine bean strains and a probable second insertion or deletion event on the left-hand side of the hrp cluster that biased estimates of nucleotide sequence divergence from fragment comparisons. This demonstrated that the determination of phylogenetic relationships among bacteria by using restriction fragment length polymorphism data requires mapping restriction sites to remove the effect of insertion or deletion events on the analysis.(ABSTRACT TRUNCATED AT 250 WORDS)

DNA, Bacterial↗

Protein restriction without strong caloric restriction decreases mitochondrial oxygen radical production and oxidative DNA damage in rat liver.

Previous studies have shown that caloric restriction decreases mitochondrial oxygen radical production and oxidative DNA damage in rat organs, which can be linked to the slowing of aging rate induced by this regime. These two characteristics are also typical of long-lived animals. However, it has never been investigated if those decreases are linked to the decrease in the intake of calories themselves or to decreases in specific dietary components. In this study the possible role of the dietary protein was investigated. Using semipurified diets, the ingestion of proteins of Wistar rats was decreased by 40% below that of controls while the other dietary components were ingested at the same level as in animals fed ad libitum. After seven weeks in this regime the liver of the protein restricted animals showed 30-40% decreases in mitochondrial production of reactive oxygen species (ROS) and in oxidative damage to nuclear and mitochondrial DNA. The decreases in ROS generation occurred specifically at complex I. They also occurred without changes in mitochondrial oxygen consumption. Instead, there was a decrease in the percent free radical leak (the percentage of total electron flow leading to ROS generation in the respiratory chain). These results are strikingly similar to those previously obtained after 40% caloric restriction in the liver of Wistar rats. Thus, the results suggest that part of the decrease in aging rate induced by caloric restriction can be due to the decreased intake of proteins acting through decreases in mitochondrial ROS production and oxidative DNA damage. Interestingly, these tissue oxidative stress-linked parameters can be lowered by restricting only the intake of dietary protein, probably a more feasible option than caloric restriction for adult humans.

Animals↗

Characterization of Neisseria meningitidis isolated by ribosomal RNA gene restriction patterns and restriction endonuclease digestion of chromosomal DNA.

The use of ribosomal RNA (rRNA) gene restriction patterns to study the molecular epidemiology of Neisseria meningitidis was investigated. Ninety-four isolates of Neisseria meningitidis were characterized by their rRNA gene restriction patterns with 16 + 23 S rRNA from Escherichia coli as a probe. Thirteen rRNA gene restriction patterns were recognized; each of these patterns represented between 1 and 30 isolates. Isolated with the outbreak-associated phenotype B15P1.16 (sulphonamide resistant) all gave a single rRNA gene restriction pattern but this pattern also contained isolates with other phenotypes. Further discrimination between isolates was achieved by comparison of banding patterns resulting from restriction endonuclease digestion of chromosomal DNA with Bgl II. This gave a banding pattern consisting of about ten bands which was simple to interpret. Using this technique 94 isolates were classified in 54 patterns containing between 1 and 14 isolates. Restriction endonuclease analysis with Bgl II characterized outbreak-associated isolates with the phenotype B15P1.16 and enabled strains not typable by conventional methods to be identified as probable outbreak-associated isolates. The techniques should prove useful for epidemiological studies.

Bacterial Proteins↗

Restricted versus liberal oxygen exposure for preventing morbidity and mortality in preterm or low birth weight infants.

BACKGROUND: This section is under preparation and will be included in the next issue. OBJECTIVES: In preterm or low birth weight infants, does targeting ambient oxygen concentration to achieve a lower versus higher blood oxygen range, or administering restricted versus liberal supplemental oxygen, influence mortality, retinopathy of prematurity, lung function, growth or development? SEARCH STRATEGY: The standard search strategy of the Neonatal Review Group was used. An additional literature search was conducted of the MEDLINE, EMBASE, and CINAHL databases in order to locate any trials in addition to those provided by the Cochrane Controlled Trials Register (CENTRAL/CCTR). SELECTION CRITERIA: All trials in preterm or low birth weight infants utilising random or quasi-random patient allocation, in which ambient oxygen concentrations were targeted to achieve a lower versus higher blood oxygen range, or restricted versus liberal oxygen was administered, were eligible for inclusion. DATA COLLECTION AND ANALYSIS: The methodological quality of the eligible trials was assessed independently by each author for the degree selection, performance, attrition and detection bias. Data were extracted and reviewed independently by the each author. Data analysis was conducted according to the standards of the Cochrane Neonatal Review Group. MAIN RESULTS: The restriction of oxygen significantly reduced the incidence and severity of retinopathy of prematurity without unduly increasing death rates in the meta-analysis of the five trials included in this review. The one trial that specifically addressed the question of lower versus higher PaO2 found no effect on death, but did not report (in sufficient detail to warrant inclusion) the effect of this intervention on eye or other outcomes. The effects of either of these oxygen administration policies on other clinically meaningful outcomes including chronic lung disease and long term growth, neurodevelopment, lung or visual function were not reported in any of the available trials. REVIEWER'S CONCLUSIONS: The results of this meta-analysis confirm the commonly held view of today's clinicians that a policy of unrestricted, unmonitored oxygen therapy has potential harms, without clear benefits. However, the question of what is the optimal target range for maintaining blood oxygen levels in preterm/LBW infants was not answered by the data available for inclusion in this review.

Humans↗

Effect of early feed restriction in male broiler chicks on plasma metabolic hormones during feed restriction and accelerated growth.

1. Plasma GH was greater (P less than 0.05) on day 12 in ad libitum-fed birds compared to restricted chicks. Conversely, maximum GH levels were found to occur in the nutrient restricted chicks during the period of accelerated growth (day 42). 2. A significant decline in circulating insulin concentrations with advancing age was evident in both ad libitum-fed and restricted chicks. 3. Feed restriction significantly suppressed circulating T3 in restricted chicks, with concentrations returning to control levels upon refeeding. 4. A significant increase in T4 with advancing age was evident in both treatment groups, with T4 being significantly greater in controls compared to restricted chicks at 54 days of age.

Age Factors↗

Two thermostable type II restriction endonucleases from Icelandic strains of the genus Thermus: Tsp4C I (ACN/GT), a novel type II restriction endonuclease, and Tsp8E I, an isoschizomer of the mesophilic enzyme Bgl I (GCCNNNN/NGGC).

Sixteen isolates of thermophilic bacteria from the genus Thermus, isolated from neutral and alkaline hot water springs in the southwest region of Iceland, were tested for the presence of restriction endonucleases. Extracts from five of the isolates showed evidence of the presence of restriction endonuclease activity by producing discrete nucleotide fragments when incubated at 65 degrees C with lambda phage DNA. Two of the isolates (Tsp4C and Tsp8E) were found to have particularly high levels of restriction endonuclease activity, and the respective enzymes from these two Thermus isolates were partially purified and characterized and their recognition and cleavage sites were determined. Enzyme Tsp4C I is a novel Type II restriction endonuclease recognizing the interrupted palindromic tetranucleotide sequence ACNGT, where N can be any one of the four bases in DNA. Tsp4C I, which retains full enzyme activity when incubated for 10 min at temperatures up to 76 degrees C, hydrolyses the phosphodiester bond in both strands of a double-stranded DNA substrate between the third and fourth bases of the recognition sequence (ACN/GT), generating fragments with a single base 3'-OH overhang. Enzyme Tsp8E I is a thermostable isoschizomer of the mesophilic Type II restriction endonuclease Bgl I (GCCNNNN/NGGC) [Lee, Clanton and Chirikjiam (1979) Fed. Proc. 28, 294], generating fragments with a three base 3'-OH overhang. However, unlike Bgl I, Tsp8E I exhibits considerable thermal stability, retaining full enzyme activity when incubated for 10 min at temperatures up to 78 degrees C. Both Tsp4C I and Tsp8E I represent significant additions to the small but expanding list of the extremely thermostable restriction endonucleases.

Base Sequence↗

Early-life food restriction of broiler chickens. II. Effects of food restrictions on the development of fat tissue.

1. The physiological and metabolic effects of a short term food restriction of broiler chickens at an early age and grown to 49 d of age were examined. 2. Fat accretion was measured by tritium dilution. Adipocyte characteristics of the fat tissue were examined by cell counting after fixation with osmium tetroxide and the metabolic effects of food restrictions were measured by closed-circuit respiration calorimetry. 3. The success of food restrictions in allowing full bodyweight recovery and producing decreases in body fat was associated with a negative energy balance and a positive nitrogen balance achieved during the restriction phase. 4. Food restrictions produced decreases in body fat possibly by causing a delay in adipocyte hyperplasia. Excess dietary energy was then lost as heat until adipocyte hyperplasia re-commenced allowing the bird to store surplus dietary energy as fat. 5. A food restriction that allows full bodyweight recovery and maximum carcase fat reduction in the broiler chicken at 49 d may not be appropriate for birds grown for longer periods.

Adipose Tissue↗

H-2L-restricted recognition of viral antigens In the H-2d haplotype, anti-vesicular stomatitis virus cytotoxic T cells are restricted solely by H-2L.

H-2d-encoded gene products were analyzed as restriction antigens for anti-vesicular stomatitis virus (VSV) cytotoxic T lymphocytes (CTL). Cold target competition experiments revealed that VSV recognition was H-2D region-restricted; H-2K-end-restricted recognition of VSV could not be demonstrated. That VSV is not recognized in the context of K-region-encoded gene products is also supported by the observation that H-2dm1 and H-2dm2 mice, strains that contain H-2Kd but have an alteration in H-2L and/or H-2D/L, are nonresponders in the CTL assay. Two different lines of evidence eliminated H-2Dd, H-2Md, and H-2Rd as the restriction antigens: (a) H-2dm2-VSV inhibitors that express H-2Dd and H-2Md did not block the lysis of P815-VSV targets by Balb/c anti-VSV killer cells, and (b) a hybridoma specific for H-2Dd failed to inhibit killer cell activity in this same effector/target combination. However, two monoclonal antibodies specific for H-2Ld but not H-2Rd completely blocked anti-VSV cytotoxic activity. Taken together, in the H-2d haplotype, anti-VSV CTL recognize VSV solely in the context of the H-2Ld molecule. This is the first demonstration of the exclusive use by a mouse stain of the H-2L molecule only for H-2-restricted recognition, and thus supports the notion that H-2L plays a major role in restricting antigen specific recognition. Finally, the fact that an anti-H-2Ld monoclone completely blocked an H-2dm2 anti-BALB/c CTL response indicates that H-2R, a molecule absent in H-2dm2 anti-BALB/c CTL response indicates that H-2R, a molecule absent in H-2dm2 but not BALB/c, does not sensitize H-2 alloreactive CTL.

Animals↗

H2-M3-restricted CD8+ T cells are not required for MHC class Ib-restricted immunity against Listeria monocytogenes.

Studies using major histocompatibility complex (MHC)-Ia-deficient mice have shown that MHC-Ib-restricted CD8+ T cells can clear infections caused by intracellular pathogens such as Listeria monocytogenes. M3-restricted CD8+ T cells, which recognize short hydrophobic N-formylated peptides, appear to comprise a substantial portion of the MHC-Ib-restricted T cell response in the mouse model of L. monocytogenes infection. In this study, we isolated formyltransferase (fmt) mutant strains of L. monocytogenes that lacked the ability to add formyl groups to nascent polypeptides. These fmt mutant Listeria strains did not produce antigens that could be recognized by M3-restricted T cells. We showed that immunization of MHC-Ia-deficient mice with fmt mutant Listeria resulted in stimulation of a protective memory response that cleared subsequent challenge with wild-type L. monocytogenes, despite the fact that M3-restricted CD8+ T cells did not proliferate in these mice. These data suggest that M3-restricted T cells are not required for protection against L. monocytogenes and underscore the importance of searching for new antigen-presenting molecules among the large MHC-Ib family of proteins.

Animals↗

Dietary fat level as affecting running performance and other performance-related parameters of rats restricted or non-restricted in food intake.

The effect of food energy density on certain physical performance characteristics of rats was studied during ad libitum and weight-restricted feeding. After a 16-week treadmill training period, 48 young adult male Long-Evans rats were divided into six groups, receiving 20%, 40% or 70% of energy as dietary fat and fed ad libitum or 40% by weight of average ad libitum intake. They were run to exhaustion once a week. Increased dietary fat level was not correlated with superior running performance at either food intake level, although during restricted feeding the high fat group received 40% more energy than the low fat group. Lower body weight was correlated with increased running performance at both food intake levels. The rate of performance increase with decreasing body weight during food restriction was significantly higher for the low fat than for the high fat group. Water consumption was considerably lower during restricted than during ad libitum feeding. Plasma glucose was lower when the 70% fat diet was fed than when compared to the other fat diets at both levels of food intake, lower from day 8 on of restricted that during ad libitum food intake, and lower on day 15 than on day 8 of the restricted intake.

Animals↗

Differentiation between MHC-restricted and non-MHC-restricted porcine cytolytic T lymphocytes.

The immune system of swine is unique in that the expression of CD4 and CD8 antigens defines four subpopulations of resting extrathymic T lymphocytes. Beyond phenotypic differences to other species, porcine T lymphocytes, particularly when derived from infected animals, are known to show high non-specific cytolytic in vitro activity. Here we describe the putative porcine CD6 antigen (workshop CD6; wCD6) which enables a phenotypic separation of T lymphocytes responsible for major histocompatibility complex (MHC)-restricted and non-MHC-restricted cytotoxicity. The putative porcine CD6 analogue, wCD6, a protein with a molecular mass of 110,000, shows high specificity for T lymphocytes and is neither expressed on B lymphocytes nor on cells of the myeloid lineage. In the extrathymic T-lymphocyte compartment wCD6 characterizes two T-lymphocyte fractions: wCD6+ T lymphocytes including both CD4+ T-helper cell subpopulations (CD4+CD8- and CD4+CD8+) and within the CD4-CD8+ fraction cells with high CD8 antigen density. In contrast the CD4-CD8- gamma/delta T-cell receptor (TCR) subset and CD4-CD8+ cells with low CD8 antigen density are included in the wCD6- T-lymphocyte fraction. Functional studies with separated wCD6 fractions revealed that the wCD6- cells can be characterized by spontaneous and non-MHC restricted cytolytic activity, whereas the wCD6+ T lymphocytes are responsible for MHC-restricted T-cell functions. Thus, the porcine wCD6 is an important antigen to discriminate between MHC-restricted and non-MHC-restricted cytotoxicity.

Animals↗