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Biomedical subjects

R K Reynolds

Publications and source records attributed to R K Reynolds.

10 recordsLinked to original sources

Characterization of epidermal growth factor receptor in normal and neoplastic human endometrium.

Growth factors, including epidermal growth factor (EGF), have been implicated in the growth of several types of cancer. This study compares EGF receptors in normal and neoplastic endometrium. Membrane fractions were isolated from surgical specimens. Radioreceptor assays demonstrated the presence of receptors with a dissociation constant of 0.64 nmol/l in normal endometrium. Affinity cross-linking revealed receptor molecular weight of 150 to 170 kiloDaltons (KD). A survey of samples (n = 37) revealed progressive decrease of EGF receptors in cancers of increasing grade: Grade 1-2 adenocarcinoma decreased 34% from control (n = 6, P less than 0.01), whereas Grade 3 adenocarcinoma decreased 90% (n = 7, P less than 0.01) and sarcoma decreased by 72% (n = 3, P less than 0.01). The dissociation constant and molecular weight of the receptor in neoplastic endometrium did not differ significantly from normal. The inverse relationship with grade suggests receptor alteration or down regulation by hormones and/or growth factors.

Adenocarcinoma

Insulin-like growth factor I receptors in normal and neoplastic human endometrium.

Insulin-like growth factor I (IGF-I) binding sites were characterized in normal and neoplastic endometrium. The characteristics of the endometrial IGF-I receptor are similar to those reported for other tissues. The binding of 125I-IGF-I to the endometrial membranes is saturable and time, temperature, and pH dependent. The 125I-IGF-I binding activity to the membranes obtained from differentiated and undifferentiated adenocarcinoma as well as sarcoma of the endometrium was significantly higher (P less than 0.05) when compared to the binding activity of the membranes obtained from normal endometrium. The Scatchard analysis of the competitive binding data of both normal and neoplastic endometrium revealed linear plots. This indicated a single class binding site for IGF-I with equilibrium dissociation constants (Kd) of 5.0, 6.8, 6.94, and 6.88 nM for normal, differentiated, and undifferentiated adenocarcinoma, and sarcoma of the endometrium, respectively. Therefore, the differences observed in 125I-IGF-I binding between normal and neoplastic endometrial membranes was due to an increase in the number of IGF-I binding sites and not to a change in receptor binding affinity. Autoradiograms from affinity labelling studies revealed a band corresponding to Mr 132,000 subunit of the receptor which is characteristic of the type I receptor reported for other tissues. A dimer of the alpha subunit (Mr 263,000) was also observed in all four categories of endometrial tissue. Additionally, autoradiograms obtained from sarcoma of the endometrium revealed a Mr 40,000 band that was only displaced by IGF-I and IGF-II peptides but not by the monoclonal antibody alpha IR-3 to the type I receptor. These suggest that the band is representative of the IGF-I or IGF-II binding protein. A similar band was not observed in the other tissues. The results show that the human endometrium contains high affinity IGF-I or IGF-II binding sites. The fact that IGF-I binding activity was significantly higher for neoplastic endometrium suggests that IGF-I may play an important role on supporting the growth of this neoplastic tissue.

Affinity Labels

Regulation of epidermal growth factor and insulin-like growth factor I receptors by estradiol and progesterone in normal and neoplastic endometrial cell cultures.

Growth factors are polypeptides which regulate cell proliferation through binding to specific receptor proteins. Normal and neoplastic human endometrium have been shown to express epidermal growth factor (EGF) and insulin-like growth factor I (IGF-1) receptors. Endometrial cell cultures were used to test modulation of EGF and IGF-1 receptors in response to steroid hormones. Endometrial gland and stroma cells were separated by enzymatic dispersion and were incubated in medium containing estradiol (10, 100, or 1000 pg/ml) or progesterone (1, 10, or 100 ng/ml) followed by radioligand assays. Normal endometrial cultures (n = 6) treated with estradiol demonstrated 40% less EGF binding than control cultures (P less than 0.05), while IGF-1 binding was unaffected. Stromal cells treated identically decreased in only one treatment group. Progesterone treatment stimulated a significant increase in EGF and IGF-1 receptors in gland cultures. Cultures derived from adenocarcinoma (n = 2) demonstrated decreased EGF binding compared with normal endometrium (P less than 0.05). Carcinoma cells treated with progesterone resulted in a dose-dependent increase in EGF binding over control (P less than 0.05). These data illustrate effects of steroid hormones upon growth factor receptors in human endometrium, and suggest involvement of growth factors in the regulation of normal and neoplastic endometrial growth.

Adenocarcinoma

Multiple endocrine neoplasia induced by the promiscuous expression of a viral oncogene.

There is increasing evidence for the importance of events that govern and influence the interaction between the transformed cell and its host being ultimately responsible for the establishment of the cancer phenotype. To derive an animal model that will allow us to define some of these phenomena at the molecular level, we have chosen to induce the expression of a viral oncogene in all tissue types, with the hope of identifying sites that are more susceptible to malignant transformation. When the gene for simian virus 40 large tumor antigen (T antigen) was placed under the control of a major histocompatibility complex class I gene enhancer, the resulting transgenic mice not only developed choroid plexus papillomas, as seen with wild-type simian virus 40, but also lymphoid hyperplasia and multiple endocrine neoplasias. The development of lymphoid hyperplasia was preceded by an elevated level of expression of T antigen in these tissues at an early age. Surprisingly, the striking thymic hyperplasia has not been observed to progress toward malignancy. The multiple endocrine neoplasias developed later in life and involved the pancreas, pituitary, thyroid, adrenals, and testes. While not preceded by an elevated level of expression of T antigen, once endocrine tumors appeared they quickly progressed toward malignant growth. Although other tissues also exhibited a basal level of expression of the viral oncogene similar to that detected in endocrine tissues, they rarely developed tumors. This transgenic mouse model seems particularly suitable for a molecular understanding of events responsible for certain tissue types being so much more susceptible to neoplastic conversion, with others being so refractory.

Animals

Translation of type C viral RNAs in Xenopus laevis oocytes: evidence that the 120,000-molecular-weight polyprotein expressed in Abelson leukemia virus-transformed cells is virus coded.

The genomic RNA of Abelson leukemia virus (AbLV) has been purified and translated in Xenopus laevis oocytes. The primary AbLV-specific protein synthesized is a polyprotein corresponding in molecular weight and immunological properties to a previously described p15 and p12 containing 110,000- to 130,000-molecular-weight polyprotein expressed in AbLV-transformed cells. In contrast, translation of woolly monkey sarcoma virus genomic RNA resulted in symthesis of a 55,000-molecular-weight polyprotein consisting of woolly helper virus p30, p15, and p12. These findings demonstrate the value of the X. laevis oocyte in vitro system for studies of translational products of replication-defective transforming viruses and establish the virus-coded nature of the nonstructural component of the 110,000- to 130,000-molecular-weight polyprotein expressed in AbLV-transformed cells.

Animals

Biochemical and immunological properties of gag genecoded structural proteins of endogenous tyep C RNA tumor viruses of diverse mammalian species.

The major nonglycosylated structure proteins of mammalian type C RNA tumor viruses are synthesized in the form of a high molecular weight precursor coded for by a viral gene disignated "gag". Previous genetic analysis of a prototype virus isolated of mouse origin has led to a determination of the internal arragnement of the regions within the gag gene coding for individual structural proteins. In the present study, the biochemical properties of structural proteins of type C virus isolates of additional mammalian species were analyzed. The results obtained indicate that the biochemical properties of immunologically cross-reactive proteins have been highly conserved throughout the evolution of this group of viruses. Moreover, these findings provide a means of mapping the gag genes of a broad range of mammalian type C viruses. In view of the results obtained, a new nomenclature system for type C viral gag gene-coded translational products is proposed.

Animals

Lymphocytic choriomeningitis virus infection in fetal, newborn, and young adult Syrian hamsters (Mesocricetus auratus).

The pathogenesis of lymphocytic choriomeningitis virus infection in fetal, newborn, and young adult hamsters was studied. Infected newborn hamsters initially developed a persistent viremia and viruria with titers often in excess of 10(4.0) mean infectious doses/0.03 ml of blood or urine. After week 12 two different patterns of infection became evident. Approximately one-half of the hamsters eventually cleared the infection, whereas the others developed a chronic progressive and ultimalely fatal disease characterized by continuous high-titered viremia and viruria and high titers of virus in their tissues. Complement-fixing antibody and, to a lesser degree, virus-neutralizing antibody coexisted with the viremia. Hamsters with persistently high levels of viremia and viruria developed chronic glomerulonephritis and widespread vasculitis, whereas hamsters that cleared their infections did not develop these lesions. Litters of hamsters born to viremic mothers were invariably infected. Litter sizes were small and breeding effectiveness was reduce; however, vertical, congenital infection was successfully passed through three generations. The course of infection in the congenitally infected hamsters was similar to that in newborn infected hamsters, with all animals producing complement-fixing antibody, some animals being capable of clearing the viremia and remaining healthy, and other animals having persistent viremia and fatal disease. Inoculated young adult hamsters did not become diseased, developed viremia and viruria which persisted up to 3 and 6 months, respectively, and developed complement-fixing antibody by 10 days after infection. The prolonged urinary excretion of large amounts of lymphocytic choriomeningitis virus by asymptomatic, chronically infected hamsters is an important public health consideration when dealing with potential human infection.

Aging

Comparisons of the immunological properties of two structural polypeptides of type C RNA viruses endogenous to old world monkeys.

Immunologically very closely related type C RNA viruses are endogenous to the domestic cat and to an old world primate, the baboon. In the present studies, radioimmunological techniques have been developed for detection of the 15,000 and 30,000 molecular weight (MW) polypeptides of each virus. The much more pronounced type-specific antigenic determinants of the lower MW polypeptides made it possible to readily differentiate these viruses from each other as well as from a type C virus isolate from a second baboon species. Normal rhesus monkey tissues were partially purified and shown to contain a reactivity with MW and immunological properties similar to that of the baboon virus 30,000 MW polypeptide. Despite a similar degree of purification, antigenic reactivity like that of the baboon virus 15,000 MW polypeptide was undetectable even in the brodest immunological tests available for this polypeptide. The present findings indicate that the immunological properties of two structural polypeptides of closely related viruses endogenous to primate and feline species have undergone different rates of antigenic change in the course of evolution within their respective host cell genome.

Animals