TY - JOUR
T1 - Bile acid biosynthesis in Smith-Lemli-Opitz syndrome bypassing cholesterol
T2 - Potential importance of pathway intermediates
AU - Abdel-Khalik, Jonas
AU - Hearn, Thomas
AU - Dickson, Alison L
AU - Crick, Peter J
AU - Yutuc, Eylan
AU - Austin-Muttitt, Karl
AU - Bigger, Brian W
AU - Morris, Andrew A
AU - Shackleton, Cedric H
AU - Clayton, Peter T
AU - Iida, Takashi
AU - Sircar, Ria
AU - Rohatgi, Rajat
AU - Marschall, Hanns-Ulrich
AU - Sjövall, Jan
AU - Björkhem, Ingemar
AU - Mullins, Jonathan G L
AU - Griffiths, William J
AU - Wang, Yuqin
N1 - This work was supported by the UKRI Biotechnology and Biological Sciences Research Council (BBSRC, grant numbers BB/I001735/1 and BB/N015932/1 to WJG, BB/L001942/1 to YW); the European Union through European Structural Funds (ESF), as part of the Welsh Government funded Academic Expertise for Business project (to WJG and YW); the Swedish Science Council (to IB); and in the US by NIH/NIGMS (GM106078 to RR); and NIH (5R01HD053036to CHS). ALD was supported via a KESS2 award in association with Markes International from the Welsh Government and the European Social Fund. JAK was supported by a PhD studentship from Imperial College Healthcare Charities. KA-M was supported by a PhD studentship from Moleculomics Ltd.
PY - 2021/2
Y1 - 2021/2
N2 - Bile acids are the end products of cholesterol metabolism secreted into bile. They are essential for the absorption of lipids and lipid soluble compounds from the intestine. Here we have identified a series of unusual Δ5-unsaturated bile acids in plasma and urine of patients with Smith-Lemli-Opitz syndrome (SLOS), a defect in cholesterol biosynthesis resulting in elevated levels of 7-dehydrocholesterol (7-DHC), an immediate precursor of cholesterol. Using liquid chromatography - mass spectrometry (LC-MS) we have uncovered a pathway of bile acid biosynthesis in SLOS avoiding cholesterol starting with 7-DHC and proceeding through 7-oxo and 7β-hydroxy intermediates. This pathway also occurs to a minor extent in healthy humans, but elevated levels of pathway intermediates could be responsible for some of the features SLOS. The pathway is also active in SLOS affected pregnancies as revealed by analysis of amniotic fluid. Importantly, intermediates in the pathway, 25-hydroxy-7-oxocholesterol, (25R)26-hydroxy-7-oxocholesterol, 3β-hydroxy-7-oxocholest-5-en-(25R)26-oic acid and the analogous 7β-hydroxysterols are modulators of the activity of Smoothened (Smo), an oncoprotein that mediates Hedgehog (Hh) signalling across membranes during embryogenesis and in the regeneration of postembryonic tissue. Computational docking of the 7-oxo and 7β-hydroxy compounds to the extracellular cysteine rich domain of Smo reveals that they bind in the same groove as both 20S-hydroxycholesterol and cholesterol, known activators of the Hh pathway.
AB - Bile acids are the end products of cholesterol metabolism secreted into bile. They are essential for the absorption of lipids and lipid soluble compounds from the intestine. Here we have identified a series of unusual Δ5-unsaturated bile acids in plasma and urine of patients with Smith-Lemli-Opitz syndrome (SLOS), a defect in cholesterol biosynthesis resulting in elevated levels of 7-dehydrocholesterol (7-DHC), an immediate precursor of cholesterol. Using liquid chromatography - mass spectrometry (LC-MS) we have uncovered a pathway of bile acid biosynthesis in SLOS avoiding cholesterol starting with 7-DHC and proceeding through 7-oxo and 7β-hydroxy intermediates. This pathway also occurs to a minor extent in healthy humans, but elevated levels of pathway intermediates could be responsible for some of the features SLOS. The pathway is also active in SLOS affected pregnancies as revealed by analysis of amniotic fluid. Importantly, intermediates in the pathway, 25-hydroxy-7-oxocholesterol, (25R)26-hydroxy-7-oxocholesterol, 3β-hydroxy-7-oxocholest-5-en-(25R)26-oic acid and the analogous 7β-hydroxysterols are modulators of the activity of Smoothened (Smo), an oncoprotein that mediates Hedgehog (Hh) signalling across membranes during embryogenesis and in the regeneration of postembryonic tissue. Computational docking of the 7-oxo and 7β-hydroxy compounds to the extracellular cysteine rich domain of Smo reveals that they bind in the same groove as both 20S-hydroxycholesterol and cholesterol, known activators of the Hh pathway.
KW - Bile acids and salts/biosynthesis
KW - Cholesterol/biosynthesis
KW - Chromatography, liquid
KW - Dehydrocholesterols/chemistry
KW - Humans
KW - Lipogenesis/genetics
KW - Mass spectrometry
KW - Molecular docking simulation
KW - Smith-Lemli-Opitz Syndrome/genetics
U2 - 10.1016/j.jsbmb.2020.105794
DO - 10.1016/j.jsbmb.2020.105794
M3 - Article
C2 - 33246156
SN - 0960-0760
VL - 206
JO - The Journal of Steroid Biochemistry and Molecular Biology
JF - The Journal of Steroid Biochemistry and Molecular Biology
M1 - 105794
ER -