Search PubMedSearch

Biomedical subjects

R T Sauer

Publications and source records attributed to R T Sauer.

7 recordsLinked to original sources

Structural and energetic consequences of disruptive mutations in a protein core.

We have characterized the properties of a set of variants of the N-terminal domain of lambda repressor bearing disruptive mutations in the hydrophobic core. These mutations include some that dramatically alter the total core residue volume (by up to six methylene groups) and some that place a single polar residue into the otherwise hydrophobic core. The structural properties of the purified proteins have been studied by CD spectroscopy, biological activity, recognition by conformation-specific monoclonal antibodies, and 1H NMR spectroscopy. The stabilities of the proteins have been measured by thermal and guanidine hydrochloride denaturation. Proteins with disruptive core mutations are found to display a continuum of increasingly nonnative properties. Large internal volume changes cause both significant conformational rearrangements and destabilization by up to 5 kcal/mol. Variants with polar substitutions at core positions no longer behave like well-folded proteins but rather display characteristics of molten globules. However, even proteins bearing some of the most disruptive mutations retain many of the crude secondary and tertiary structural features of the wild-type protein. These results indicate that primitive elements of native structure can form in the absence of normal core packing.

Amino Acid Sequence

The lambda repressor contains two domains.

Papain digestion of the lambda phage repressor produces two fragments that are relatively resistant to further digestion. One includes the amino terminus (residues 1-92) and the other the carboxyl terminus (residues 132-236). Calorimetry shows that the amino-terminal fragment denatures near 50 degrees C and that the carboxyl-terminal fragment denatures near 70 degrees C. Intact repressor undergoes two denaturations, one near 50 degrees C and another near 70 degrees C. These and other data show that lambda repressor consists of two domains joined by a "connector" 40 amino acids long that is sensitive to proteases. The amino-terminal domain binds DNA, and the carboxyl-terminal domain oligomerizes.

Amino Acid Sequence

Primary structure of the lambda repressor.

The complete covalent structure of the bacteriophage lambda repressor has been determined by sequential Edman degradation, gas chromatographic-mass spectrometric peptide sequencing, and DNA sequencing of the repressor gene cI. The repressor is a single-chain, acidic protein containing 236 amino acids. The amino terminal 40 residues are highly polar and basic. Lysines and arginines in the sequence tend to be clustered.

Amino Acid Sequence