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通过催化氢化调节烟草叶肉原生质体活细胞中的膜流动性。

Modulation of membrane fluidity in living protoplasts of Nicotiana plumbaginifolia by catalytic hydrogenation.

作者信息

Vigh L, Joó F, Cséplö A

出版信息

Eur J Biochem. 1985 Jan 15;146(2):241-4. doi: 10.1111/j.1432-1033.1985.tb08645.x.

Abstract

A homogeneous water-soluble Ru catalyst, has been incorporated into mesophyll protoplasts isolated from Nicotiana plumbaginifolia leaves. In the presence of hydrogen gas this complex causes an extensive loss of unsaturated fatty acid bonds and a concomitant increase in microviscosity of the cellular membranes. Although the gradual reduction of the level of unsaturation, per se, is accompanied by considerable cell damage, there is an optimum reaction time where approximately 50% of the protoplasts are still living and about 20% of the double bounds initially present in fatty acyl residues have undergone hydrogenation. The possible mechanism of the self regulatory process competing with the hydrogenation in the early stages of the reaction is also discussed.

摘要

一种均相水溶性钌催化剂已被引入从白花烟草叶片分离出的叶肉原生质体中。在氢气存在下,这种络合物会导致不饱和脂肪酸键大量损失,同时细胞膜的微粘度增加。尽管不饱和度水平的逐渐降低本身伴随着相当程度的细胞损伤,但存在一个最佳反应时间,此时约50%的原生质体仍存活,且脂肪酰基残基中最初存在的双键约20%已发生氢化。还讨论了在反应早期与氢化竞争的自我调节过程的可能机制。

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