Kitajima Y, Thompson G A
Biochim Biophys Acta. 1977 Jul 4;468(1):73-80. doi: 10.1016/0005-2736(77)90152-3.
Tetrahymena cells elongated and desaturated massive supplements of palmitic or lauric acid at nearly twice the rates employed by unfed cells, thereby maintaining constant the physical properties of their membrane lipids. However, when a mixture of the 9- and 10-monomethoxy derivatives of stearic acid was administered, these compounds were incorporated without further metabolism. The marked fluidizing effect of the phospholipid-bound methoxy-fatty acids elicited an immediate reduction in fatty acid desaturase activity, the pattern of change being very similar to that induced by supplements of polyunsaturated fatty acids. The modulation of fatty acid desaturase activity by methoxy-acids clearly seems to be governed by membrane fluidity rather than by some form of end product inhibition of the type which might have been postulated to explain the similar effect caused by polyunsaturated fatty acids.
四膜虫细胞在大量补充棕榈酸或月桂酸时会伸长并使脂肪酸去饱和,其速率几乎是未喂食细胞的两倍,从而维持其膜脂物理性质的恒定。然而,当给予硬脂酸的9-和10-单甲氧基衍生物混合物时,这些化合物未经进一步代谢就被整合进去。磷脂结合的甲氧基脂肪酸显著的流化作用导致脂肪酸去饱和酶活性立即降低,变化模式与多不饱和脂肪酸补充剂所诱导的非常相似。甲氧基酸对脂肪酸去饱和酶活性的调节显然似乎是由膜流动性控制的,而不是由可能被假定用来解释多不饱和脂肪酸引起的类似效应的某种形式的终产物抑制所控制。