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Interleukin (IL)-15 and IL-7 jointly regulate homeostatic proliferation of memory phenotype CD8+ cells but are not required for memory phenotype CD4+ cells.

The overall size and composition of the pool of naive and memory T cells are tightly regulated by homeostatic mechanisms. Recent work has shown that homeostasis of naive T cells is controlled by two factors, self-major histocompatibility complex (MHC)/peptide ligands and a cytokine, interleukin (IL)-7. In particular, contact with these two factors is required for naive CD4+ and CD8+ cells to undergo "homeostatic" proliferation, i.e., proliferation induced as a consequence of severe T cell depletion. In contrast to naive T cells, the factors that drive memory T cells to undergo homeostatic proliferation are poorly understood. To address this issue, purified memory phenotype CD4+ and CD8+ cells from normal mice were adoptively transferred into various gene-knockout mice rendered T cell-deficient by sublethal irradiation. Three findings are reported. First, unlike naive T cells, homeostatic proliferation of memory T cells is largely MHC independent. Second, memory CD8+ cells can utilize either IL-7 or IL-15 to undergo homeostatic proliferation; however, in the absence of both IL-7 and IL-15, homeostatic proliferation fails to occur. Third, unlike memory CD8+ cells, homeostatic proliferation of memory CD4+ cells is independent of IL-7 and IL-15 (also IL-4). Thus, the homeostatic proliferation mechanisms that control memory CD8+ cells and memory CD4+ cells are quite distinct.

Animals↗

Age-related differences in phenotype and function of CD4+ T cells are due to a phenotypic shift from naive to memory effector CD4+ T cells.

Based on the combined expression of CD27 and CD28, a putative model of T cell differentiation has been previously proposed. We used CD27 and CD28 expression in order to comparatively study the size, cytokine production capacity and proliferative response of CD4+ T cell sub-populations from healthy young and elderly volunteers. Elderly persons had a lower percentage of CD27+CD28+ but a higher percentage of CD27-CD28+ and CD27-CD28-CD4+ T cells than the young persons. CD27-CD28-CD4+ T cells were present, although at relatively low numbers, in the vast majority of the healthy elderly donors but were only sporadically detected in young persons. Each CD4+ T cell sub-population exhibited a distinct phenotype and cytokine production profile, which were not affected by age. When purified CD27+CD28+ were stimulated by staphylococcal enterotoxin B, they proliferated to a greater extent than CD27-CD28+ and CD27-CD28-CD4+ T cells. However, we did not observe age-related differences in proliferative response of each sub-population. We concluded that although the size of the different sub-populations differed between the young and the old group, the functional characteristics of each sub-population were the same in both age groups. This suggests that on a per cell basis there is no functional impairment of CD4 memory T cells in elderly persons. Consequently, potential differences in the function of the total CD4+ T cell population are most likely due to different composition of repertoire.

Adult↗

Insulin-like growth factor II overexpression in myoblasts induces phenotypic changes typical of the malignant phenotype.

The objective of this study was to examine the role of insulin-like growth factor II (IGF-II) in the pathogenesis of human rhabdomyosarcomas (RMS). We have demonstrated previously that RMS express high levels of IGF-II mRNA, secrete IGF-II peptide, and express both IGF-I and IGF-II receptors. Moreover, we showed that IGF-II functions as an autocrine growth and motility factor in RMS. Since IGF-II is expressed at high levels in fetal muscle cells and RMS are tumors thought to derive from skeletal myoblasts arrested along the normal myogenic pathway, autocrine production of IGF-II by RMS may be an etiological event in the development of this tumor. We have developed a model system which enabled us to study the effects of endogenous IGF-II overprotection in muscle myoblasts. Human cDNA for pre-prohormone IGF-II was transfected into mouse myoblasts in order to achieve high, constant expression of this growth factor, which is normally down-regulated at the end of the differentiation process. Expression of high IGF-II levels resulted in: (a) an increased proliferative rate; (b) impairment of the ability to differentiate into myoblasts; and (c) acquisition of the capability of anchorage-independent growth. No changes in the expression of IGF-I receptors were noted. We conclude that IGF-II overexpression in muscle myoblasts induces morphological and biological changes typical of the malignant phenotype and represents a fundamental event in the pathogenesis of RMS and possibly of other embryonal tumors.

Animals↗

Peritoneal gamma delta T cells induced by Escherichia coli infection in mice. Correlation between Thy-1 phenotype and host minor lymphocyte-stimulating phenotype.

We found that gamma delta T cells increased in number in the peritoneal cavity after i.p. inoculation with Escherichia coli (ATCC 26) in mice. The increase of the gamma delta T cells was most prominent on day 5 after inoculation when the pathogens had been already eliminated from the hosts. Two-color flow cytometric (FCM) analysis revealed that these gamma delta T cells in infected C57BL/6 mice expressed Thy-1 Ag on their cell surface. On the other hand, gamma delta T cells induced by E. coli inoculation in C3H/He mice contained Thy-1-negative gamma delta T cells in addition to the Thy-1-positive gamma delta T cells. In both strains, irrespective of Thy-1 Ag expression, these gamma delta T cells were CD5 negative, CD44 positive, L-selectin negative, Ly-6C negative, and IL-2R low positive. Analyses of peritoneal exudate cells (PEC) from several other strains of mice after E. coli inoculation suggested that Thy-1-negative gamma delta T cells appear in mice carrying endogenous superantigen specific for V beta 3, especially mammary tumor virus-6. These findings suggest that Thy-1 Ag expression on the gamma delta T cells appearing in the peritoneal cavity after i.p. E. coli inoculation is correlated to the Mls phenotype of the host mice.

Animals↗

Severe musculoskeletal phenotype associated with an unbalanced t(6;10) translocation: clarification of the locus for this phenotype on distal 6p.

Larsen syndrome is a congenital condition consisting of multiple large joint dislocations associated with a distinctive facial appearance and frequently other abnormalities. The syndrome is probably genetically heterogeneous, with both dominant and recessive inheritance reported. Previously two cases have been reported where a Larsen-like syndrome was associated with unbalanced chromosomal translocations resulting in partial trisomy 1q and monosomy distal 6p. We now report a child with an unbalanced translocation resulting in a distal 6p deletion and partial trisomy 10q, who has Larsen-like features and has also severe developmental delay. A G-banded preparation revealed a karyotype 46,XX,der(6),t(6:10)(p25;q25.2) and the breakpoint at 6p25 was confirmed by FISH using YAC probes (between 6p25 at D6s477/F13A1 and 6p24 at 6WI13606). Our case provides further evidence for a Larsen-like locus at distal 6p and reduces the potential critical region.

Adult↗

Hereditary tyrosinaemia type II in a consanguineous Ashkenazi Jewish family: intrafamilial variation in phenotype; absence of parental phenotype effects on the fetus.

We describe an Ashkenazi Jewish family in which two adults, offspring of consanguineous parents, have persistent hypertyrosinaemia (770-1110 mumol/L; normal less than 110 mumol/L). The metabolic disorder in this family is apparently due to hepatic cytosolic tyrosine aminotransferase deficiency (hereditary tyrosinaemia, type II; McKusick, 276600), because it is associated with the oculocutaneous manifestations of Richner-Hanhart syndrome. The association of this syndrome with hereditary tyrosinaemia type II is presumed to be constant. It is not in this family. The affected female sib (age 41 years) has hypertyrosinaemia and oculocutaneous signs; the brother (age 39 years) has hypertyrosinemia but no oculocutaneous disease. Both sibs have two children; none has signs of a metabolic fetopathy. Maternal hypertyrosinaemia and maternal hyperphenylalaninaemia evidently constitute different risk factors for the fetus. Paternal hypertyrosinaemia is apparently not a risk to male infertility.

Adult↗

Phenotype-driven genetic approaches in mice: high-throughput phenotyping for discovering new models of cardiovascular disease.

Cardiovascular diseases such as hypertension, atherosclerosis, cardiac hypertrophy homocysteinemia and arrhythmias impose great health, social and financial costs. Some of these diseases are single gene traits that segregate in a simple Mendelian manner. Most are genetically complex, however, and result from combinations of large numbers of genes (polygenic and epistatic traits) or from interactions between genetic and environmental factors (multifactorial traits). Insights into the genetic control of these diseases could lead to improved diagnosis and treatment as well as a deeper understanding of basic physiological processes.

Animals↗

Emergence during development of the white-adipocyte cell phenotype is independent of the brown-adipocyte cell phenotype.

In mammals, two types of adipose tissue are present, brown and white. They develop sequentially, as brown fat occurs during late gestation whereas white fat grows mainly after birth. However, both tissues have been shown to have great plasticity. Thus an apparent transformation of brown fat into white fat takes place during post-natal development. This observation raises questions about a possible conversion of brown into white adipocytes during development, although indirect data argue against this hypothesis. To investigate such questions in vivo, we generated two types of transgenic line. The first carried a transgene expressing Cre recombinase specifically in brown adipocytes under the control of the rat UCP1 promoter. The second corresponded to an inactive lacZ gene under the control of the human cytomegalovirus promoter. This dormant gene is inducible by Cre because it contains a Stop sequence between two loxP sequences, separating the promoter from the coding sequence. Adipose tissues of progeny derived by crossing independent lines established from both constructs were investigated. LacZ mRNA corresponding to the activated reporter gene was easily detected in brown fat and not typically in white fat, even by reverse transcriptase PCR experiments. These data represent the first direct experimental proof that, during normal development, most white adipocytes do not derive from brown adipocytes.

Adipocytes↗