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Biomedical subjects

H Gregory

Publications and source records attributed to H Gregory.

83 records · Page 5Linked to original sources

Human transforming growth factor-alpha causes precocious eyelid opening in newborn mice.

Both murine and human epidermal growth factors (EGFs) are known to cause precocious opening of the eyelids in newborn mice. Another set of peptides that are structurally and functionally homologous to murine and human EGFs are the murine and human type-alpha transforming growth factors (TGF-alpha s), TGF-alpha s have been found in many cancer cells and it has been suggested that their autocrine action may play an important part in malignant transformation. In several in vitro systems murine and human TGF-alpha s are functionally interchangeable with murine and human EGFs. However, the in vivo activity of the TGF-alpha s has not been characterized, as only small amounts of these peptides were available until recently. The cloning of the gene for human TGF-alpha and its expression in Escherichia coli now allow us to demonstrate that human TGF-alpha is as active as murine EGF in promoting eyelid opening in newborn mice. Furthermore, we show in a dose-dependent eyelid opening assay that human EGF is as potent as its murine homologue with respect to this biological property.

Age Factors↗

The solution structure of human epidermal growth factor.

The epidermal growth factors (EGFs) are powerful mitogens for a wide variety of cells in culture; human EGF (hEGF), known as urogastrone, also inhibits gastric acid secretion in vivo. The transforming growth factors (TGF-alpha) are related to the EGF family both in sequence and activity and EGF-like sequences are often observed in a wide range of functionally unrelated proteins. Attempts to examine the structure of EGF by diffraction methods have not yet succeeded because of difficulties with crystallization. We report here a three-dimensional structure of a biologically active derivative (residues 1-48) of the 53-residue human EGF. An analysis of high resolution 1H nuclear magnetic resonance (NMR) spectra was used together with a combination of distance geometry, restrained energy minimization and restrained molecular dynamics methods. The three-dimensional structure provides a basis for understanding the properties of EGFs and for predicting the structures of homologous sequences in other proteins.

Chemical Phenomena↗