Rodriguez R J, Parks L W
Arch Biochem Biophys. 1983 Sep;225(2):861-71. doi: 10.1016/0003-9861(83)90099-1.
A variety of sterols and stanols have been analyzed for their ability to satisfy bulk membrane and high-specificity (sparking) functions in three yeast sterol auxotrophs. While many sterols and stanols satisfied bulk membrane requirements, only those possessing a C-5,6 unsaturation or capable of being desaturated at C-5 fulfilled the high-specificity sparking requirement. Unsaturation of the A-ring or beta-saturation of a C-5,6 double bond rendered both sterol and stanol unsuitable for either function. The C-28 methyl group of ergosterol, while not required for growth, allowed for greater ease of desaturation at C-5 in vivo. As a result some sterols and stanols lacking the C-28 methyl were incapable of satisfying the sparking requirement while identical compounds possessing the C-28 methyl were able to fulfill the sparking function(s). These data are extended to hypothesize a role for the C-28 methyl group of ergosterol in yeast.
已对多种甾醇和甾烷醇进行分析,以研究它们在三种酵母甾醇营养缺陷型中满足大量膜需求和高特异性(引发)功能的能力。虽然许多甾醇和甾烷醇满足了大量膜的需求,但只有那些具有C-5,6不饱和键或能够在C-5处去饱和的甾醇和甾烷醇才能满足高特异性引发需求。A环的不饱和或C-5,6双键的β-饱和使甾醇和甾烷醇都不适用于任何一种功能。麦角甾醇的C-28甲基虽然不是生长所必需的,但在体内能使C-5处的去饱和更容易。因此,一些缺乏C-28甲基的甾醇和甾烷醇无法满足引发需求,而具有C-28甲基的相同化合物则能够发挥引发功能。这些数据进一步推测了麦角甾醇的C-28甲基在酵母中的作用。