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A Lachance

Publications and source records attributed to A Lachance.

3 recordsLinked to original sources

Cloning and expression of rat liver CTP: phosphocholine cytidylyltransferase: an amphipathic protein that controls phosphatidylcholine synthesis.

CTP:phosphocholine cytidylyltransferase (EC 2.7.7.15) is a key regulatory enzyme in the synthesis of phosphatidylcholine in higher eukaryotes. This enzyme can interconvert between an inactive cytosolic form and an active membrane-bound form. To unravel the structure of the transferase and the mechanism of its interaction with membranes, we have cloned a cytidylyltransferase cDNA from rat liver by the oligonucleotide-directed polymerase chain reaction. Transfection of the rat clone into COS cells resulted in a 10-fold increase in cytidylyltransferase activity and content. The activity of the transfected transferase was lipid-dependent. The central portion of the derived protein sequence of the rat clone is highly homologous to the previously determined yeast cytidylyltransferase sequence [Tsukagoshi, Y., Nikawa, J. & Yamashita, S. (1987) Eur. J. Biochem. 169, 477-486]. The rat protein sequence lacks any signals for covalent lipid attachment and lacks a hydrophobic domain long enough to span a bilayer. However, it does contain a potential 58-residue amphipathic alpha-helix, encompassing three homologous 11-residue repeats. We propose that the interaction of cytidylyltransferase with membranes is mediated by this amphipathic helix lying on the surface with its axis parallel to the plane of the membrane such that its hydrophobic residues intercalate the phospholipids.

Amino Acid Sequence

Stereoscopic acuity with induced refractive errors.

The relation between refractive error and stereoscopic acuity was investigated by measuring stereoacuity with different combinations of positive and negative spherical lenses over the usual refractive correction. A detailed study was performed on two subjects. In general, there was little change in stereoacuity when the added lenses were of equal power. On the other hand, power inequality almost invariably caused a reduction in stereoacuity. A technique is described for detecting a refractive overcorrection by means of a sequence of stereoacuity measurements.

Dominance, Cerebral