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B Terenna

Publications and source records attributed to B Terenna.

3 recordsLinked to original sources

Synthesis of the Small Subunit of Ribulose-1,5-bisphosphate Carboxylase by Soluble Fraction Polyribosomes of Pea Leaves.

The products of amino acid incorporation by pea (Pisum sativum L.) leaf soluble fraction polyribosomes in the wheat germ system were examined by two-dimensional electrophoresis and fluorography.There are two isoelectric variants of the small subunit of ribulose bisphosphate carboxylase in this organism, and the more alkaline of these is consistently labeled in the cell-free protein-synthesizing system. The more acid variant is also labeled, but often less extensively. A minority of leaf polyribosomes are recovered from low speed sedimentable fractions. While these appear also to synthesize the small subunits, the patterns of labeling do not indicate a preferential synthesis of these polypeptides by the sedimentable fraction polyribosomes.In the same experiments, labeling of the large subunit spots was sharply below background; these results confirm a cytoplasmic site of synthesis for small subunits of ribulose bisphosphate carboxylase.

Journal Article↗

Subsite interactions of ribonuclease T1: binding studies of dimeric substrate analogues.

Ultraviolet difference spectral binding studies of ribonuclease T1 with pGp, ApG, CpG, UpG, DGpdA, dGpdC, dGpdG, dGpdT, dTpdG, pdApdG, pdTpdG, pdGpdA, pdGpdG, pdGpdT, c(pdGpdA), and c(pdGpdG) were conducted at pH 5.0, 0.2 M ionic strength and 25 degrees C. Under these conditions, the characteristic difference spectrum and association constant for (1:1) ribonuclease T1 binding were determined for each ligand. The binding of guanosine and deoxyguanosine containing ligands could be distinguished by the shapes of their difference spectra. The results indicated that the guanine moiety of each ligand was bound at the enzyme's primary recognition site. Evidence of a specific enzyme subsite for binding the adenine moiety of ApG and pdApdG is presented. The proposal of a specific enzyme subsite for binding the 5'-phosphate group of a complexed guanosine moiety (Sawada, F., Samejima, T., and Saneyoshi, M. (1973), Biochim. Biophys. Acta 299, 596) is not supported in the present work. Preliminary evidence for the existence of two additional enzyme subsites and the effect of oligomer conformation on enzyme binding are also discussed.

Kinetics↗