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H I Maruyama

Publications and source records attributed to H I Maruyama.

4 recordsLinked to original sources

A model for transmembrane signalling by the aspartate receptor based on random-cassette mutagenesis and site-directed disulfide cross-linking.

Extracellular information is transduced by transmembrane receptors into the inside of the cell across a membrane barrier. To understand the molecular basis of transmembrane signalling, we replaced the transmembrane segment 2 (TM2) of the Escherichia coli aspartate receptor, Tar, with random sequences that are 21 amino acid residues in length and consist of Arg, Gly, Ser, Cys, Val, Leu, Ile and Phe at each position. From this ensemble for recombinant molecules, functional receptors were recovered as clones that could bind aspartate and transmit a signal to the intracellular domain. Restricted average hydrophobicity values were observed for functional transmembrane domains, and support the observation that transmembrane segments typically have hydrophobicity values greater than 1.6. However, non-functional transmembrane domains with greater hydrophobicity than 1.6 indicate that hydrophobicity is not a sole determinant for its function. Fourier transform analysis of the functional TM2 sequences suggests that the transmembrane segment has an alpha-helical structure with three distinct faces. Cross-linking of the faces to transmembrane segment 1 (TM1) mimics the "locked" signalling phenotypes of the wild-type receptor. The results are consistent with a model in which TM2 rotates in the plane of the lipid bilayer, and the rotation becomes locked at one face of the alpha-helix in the presence of attractant and at another face in the presence of repellent. This dynamic movement of the transmembrane domain may be a common signalling mechanism of homologous membrane receptor molecules such as the insulin receptor. Random-cassette mutagenesis and disulfide cross-linking provide powerful strategies for examining the structure and function of transmembrane segments.

Amino Acid Sequence↗

Lambda foo: a lambda phage vector for the expression of foreign proteins.

This work describes a lambda phage expression system, lambda foo, that produces foreign proteins fused to the surface of the virus particle. The lambda foo vector has multiple cloning sites for the insertion of a foreign DNA fragment and color selection for recombinants. Foreign proteins are fused to the C terminus of a truncated phage tail protein, pV, by a peptide linker. Conditional chain termination allows the assembly and fusion of multisubunit proteins. We have attached the complete Escherichia coli beta-galactosidase and the plant Bauhinia purpurea agglutinin by cloning their genes into the vector. The constructs express functionally active proteins on the phage particle surface and have been purified by affinity chromatography with an antibody for beta-galactosidase and a mucin as a ligand for Bauhinia purpurea agglutinin.

Amino Acid Sequence↗

A bacteriophage T7-based expression vector, pBT7, with color selection for the recombinant.

A bacterial expression plasmid, pBT7, based on a bacteriophage T7 RNA polymerase/promoter system, has been devised for positive color selection of clones containing an insert. The T7 gene 10 promoter and its N-terminal portion, 89 nucleotides in length, have been amplified by the polymerase chain reaction and cloned into the multiple cloning site of plasmid pUC18 in the opposite direction to lacZ'. This insertion does not inactivate the lacZ alpha-peptide activity. Hence, bacteria carrying pBT7 without an insert form blue colonies on an indicator plate, while bacteria carrying recombinant clones with an insert appear as white colonies. Using pBT7, part of the Caenorhabditis elegans unc-13 gene product has been overproduced at a high level, approaching 50% of total Escherichia coli protein.

Animals↗