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Biomedical subjects

L Pfeffer

Publications and source records attributed to L Pfeffer.

7 recordsLinked to original sources

Differences in activity between alpha and beta type I interferons explored by mutational analysis.

Type I interferon (IFN) subtypes alpha and beta share a common multicomponent, cell surface receptor and elicit a similar range of biological responses, including antiviral, antiproliferative, and immunomodulatory activities. However, alpha and beta IFNs exhibit key differences in several biological properties. For example, IFN-beta, but not IFN-alpha, induces the association of tyrosine-phosphorylated receptor components ifnar1 and ifnar2, and has activity in cells lacking the IFN receptor-associated, Janus kinase tyk2. To define the structural basis for these functional differences we produced human IFN-beta with point mutations and compared them to wild-type IFN-beta in assays that distinguish alpha and beta IFN subtypes. IFN-beta mutants with charged residues (N86K, N86E, or Y92D) introduced at two positions in the C helix lost the ability to induce the association of tyrosine-phosphorylated receptor chains and had reduced activity on tyk2-deficient cells. The combination of negatively charged residues N86E and Y92D (homologous with IFN-alpha8) increased the cross-species activity of the mutant IFN-betas on bovine cells to a level comparable to that of human IFN-alphas. In contrast, point mutations in the AB loop and D helix had no significant effect on these subtype-specific activities. A subset of these latter mutations did, however, reduce activity in a manner analogous to IFN-alpha mutations. The effects of these mutations on IFN-beta activity are discussed in the context of a family of related ligands acting through a common receptor and signaling pathway.

Amino Acid Sequence↗

Growth abnormalities of cultured human skin fibroblasts derived from individuals with hereditary adenomatosis of the colon and rectum.

A heritable propensity to develop malignant lesions is found in individuals with familial adenomatosis of the colon an rectum (ACR) and the Gardner's syndrome variant, an autosomal dominant trait. In the present study, the growth characteristics of cultured skin fibroblasts (SF) derived from normal-appearing flat skin biopsies of ACR families, representing all phenotypes, and appropriate controls were investigated. SF were obtained from stocks between the second and fifth passages and growth to confluency in Eagle's Minimal Essential Medium (EMEM) supplemented with 15% fetal calf serum (FCS). Following trypsinization, cells were replanted in EMEM supplemented with either 1% or 15% FCS at an initial density of 4 x 10(3) cells/cm2 and counted daily for five days. Normal SF representing several age groups (both sexes) and those obtained from non-afflicted individuals of ACR families grew only in 15% FCS. In contrast, SF from ACR subjects and from embryonal skin grew both in 1% and 15% FCS. SF from several clinically asymptomatic adults, children or ACR patients, grew in 1% FCS as well. Cell cultures from ACR individuals showed regions of criss-crossed arrays and multilayered pattern. These growth properties were not observed in normal cell cultures. The SF from ACR individuals did not grow in methocel, nor did they form tumors in athymic mice. These results suggest the occurrence of previously undetected biochemical alterations in SF taken from ACR genotypes.

Animals↗

Segregation of histone fractions from purified rat pancreas nuclei by isoelectric focusing.

The present report describes the purification of nuclei from rat pancreas and the use of isoelectric focusing for the segregation of histone fractions, a heterogeneous mixture with respect to charge. This procedure employs gels of 5% polyacrylamide as support matrices, in 6.25 M urea, and spans a pH range of 7.5-10.8. It was, therefore, found adequate for study of the microheterogeneity of histones. The banding pattern of histone fractions in pancreas development using electrofocusing is presented.

Adenosine Triphosphate↗

Recent studies on the identification of proliferative abnormalities and of oncogenic potential of cutaneous cells in individuals at increased risk of colon cancer.

This recent study describes the growth characteristics of ACR skin fibroblasts in culture and their differential susceptibility to transformation by Kirsten murine sarcoma virus (Ki-MSV). The SF were derived from normal appearing subepidermoid biopsies of ACR individuals, their progeny and ocntrols. Normal SF were contact-inhibited and grew only in 15% FCS. SF of ACR subjects, and some asymptomatic ACR progeny were not contact inhibited, grew in both 1% and 15% FCS and were considerably more susceptible to transformation by Ki-MSV than were control SF. The virally transformed SF showed a loss of anchorage dependency in methylcellulose and formed tumors in athymic mice. The results suggest the presence of early and previously undetected metabolic lesions in SF from clinically asymptomatic subjects. These phenotype markers are currently evaluated for their utility in the clinical diagnosis of individuals with latent ACR and those at increased risk for colon cancer. SF from ACR individuals have been recently shown to contain significant alterations in the intracellular distribution of actin (R. Pollack and L. Kopelovich, in preparation), and elevated levels of plasminogen activator (L. Kopelovich).

Cell Transformation, Neoplastic↗