Search PubMed⌕ Search

Biomedical subjects

M Gut

Publications and source records attributed to M Gut.

At least 37 records · Page 2Linked to original sources

Intermediates in the conversion of cholesterol to pregnenolone: kinetics and mechanism.

The early kinetics of the conversion of cholesterol (A) to (22R)-22-hydroxycholesterol (B), (20R,22R)-20,22-dihydroxycholesterol (C) and pregnenolone (D) has been studied with bovine adrenocortical mitochondrial aceton-dried powder preparations. The sequential appearance of B, C, and D was demonstrated. During the lag period of D appearance, B, and C approached steady state levels, at which time the formation of D approximated linearity. The initial rate of B appearance approximated the rate of the linear phase of pregnenolone formation. When cholesterol was initially incubated in an 18O2-enriched atmosphere, the gas phase abruptly changed to air and incubation continued for a relatively short period, there was a drop in the 18O content of the recovered B and C. These results demonstrated for the first time the turnover of these compounds as they formed in the system from cholesterol, without the use of exogenously added tracer B or C. The 18O content of the recovered glycol was lower at position C-20 than at C-22, as would be expected from a consecutive process involving an initial oxygen attack of cholesterol at C-22. These results suggest the sequence A leads to B leads to C leads to D as the basic mechanism for the conversion of cholesterol to pregnenolone.

Adrenal Cortex↗

Exclusion of 20(22)-dehydrocholesterol as an intermediate in the biosynthesis of pregnenolone in bovine adrenocortical mitochondrial acetone-dried powder preparations.

Incubation of (22R)-(22-180)20-hydroxycholesterol with a bovine adrenocortical mitochondrial acetone-dried powder preparation in air yielded (20R, 22R)-20, (22-18O)22-dihydroxy-cholesterol. Incubation of (20S)-(20-18O)22-hydroxycholesterol yielded (20R, 22R)-(20-18O)20,22-dihydroxycholesterol. The formed glycols and the substrates reisolated at the end of the incubations had the same 18O abundance as the starting materials. No significant (20R, 22R)-20,22-dihydroxycholesterol was formed following incubation with either (E)-or (Z)-20, (22)-dehydrocholesterol. (20R,22S)-20, 22-Epoxycholesterol yielded approximately 1/5 of the amount of pregnenolone obtained in a similar incubation with cholesterol. No significant pregnenolone formation was observed with (20R, 22R)-20,22-epoxycholesterol. These results exclude a mechanism for the biosynthesis of (20R, 22R)-20,22-dihydroxycholesterol from the monohydroxylated cholesterol derivatives by way of dehydration followed by epoxidation and hydration. Similarly, the participation of an olefin and an epoxide as intermediates in the transformation of cholesterol to pregnenolone in acetone-dried powder preparations of adrenal cortex mitochondria is unlikely.

Adrenal Cortex↗

Mass spectrometric study of the enzymatic conversion of cholesterol to (22R)-22-hydroxycholesterol, (20R,22R)-20,22-dihydroxycholesterol, and pregnenolone, and of (22R)-22-hydroxycholesterol to the lgycol and pregnenolone in bovine adrenocortical preparations. Mode of oxygen incorporation.

Incubation of cholesterol with a bovine adrenocortical mitochondrial acetone-dried powder preparation yielded (22R)-22-hydroxycholesterol (I), (20R,22R)-20,22-dihydroxycholesterol(II), and pregnenolone (III) which were conclusively identified by combined gas chromatography-mass spectrometry. Incubations with [4-14C]cholesterol yielded I, II, and III with specific activities (determined from partial mass-spectral scans) not significantly different from those of the used substrate or the cholesterol reisolated after the incubation, demonstrating that the isolated compounds arose mostly, if not entirely, from the substrate cholesterol. Incubations in an 18O-enriched atmosphere yielded I, II, and III with 18O at position C-22, C-20 and C-22, and C-20, respectively, providing evidence that the hydroxyl groups of the side chain of I and II and the C-20 oxygen atom of III originated from molecular oxygen. The distribution of the oxygen atoms in II after incubation with 18O2 and 16O2 (devoid of 16O18O) proved that the hydroxyl groups of the side chain of II were introduced from two different molecules of oxygen, consistent with a sequential hydroxylation of cholesterol. No (20S)-20-hydroxycholesterol was found. Incubation of I in an 18O-enriched atmosphere afforded II and III with 18O at C-20.

Adrenal Cortex↗