Donaldson R P
Department of Biological Sciences, George Washington University, Washington, DC 20052.
Plant Physiol. 1981 Jan;67(1):21-5. doi: 10.1104/pp.67.1.21.
Glyoxysome ghosts were isolated from germinating castor bean endosperms using established methods. Electron microscopic examination showed that some matrix material was retained within the glyoxysomal membrane. Two cytochrome reductases and phosphorylcholine glyceride transferase co-sedimented with the alkaline lipase, a known component of the glyoxysome membrane, in sucrose gradient centrifugation of osmotically shocked glyoxysomes. The activities of these enzymes in the glyoxysome membranes were compared to those in the endoplasmic reticulum relative to phospholipid content. On this basis, the phosphorylcholine glyceride transferase was 10-fold more active in the endoplasmic reticulum, whereas the lipase was 50-fold more active in the glyoxysome membrane. The cytochrome reductases were only 2-fold more active in the endoplasmic reticulum, indicating that they are components of the two membranes. Difference spectroscopy of the glyoxysome membrane suspension revealed the presence of a b5-type cytochrome similar to that found in the endoplasmic reticulum. Since the glyoxysome membrane is apparently derived from the endoplasmic reticulum, components of the endoplasmic reticulum such as these are likely to be incorporated into the glyoxysome membrane during biogenesis.Enzyme activities involving the cofactors NADH or CoA were measurable in broken, but not in intact, glyoxysomes. Thus, it appears that cofactors for enzymes within the organelle cannot pass through the membrane.
利用既定方法从萌发的蓖麻籽胚乳中分离出乙醛酸循环体膜泡。电子显微镜检查显示,一些基质物质保留在乙醛酸循环体膜内。在对经渗透压休克处理的乙醛酸循环体进行蔗糖梯度离心时,两种细胞色素还原酶和磷酸胆碱甘油酯转移酶与乙醛酸循环体膜的已知成分碱性脂肪酶一起发生了共沉降。将乙醛酸循环体膜中这些酶的活性与内质网中相对于磷脂含量的酶活性进行了比较。在此基础上,磷酸胆碱甘油酯转移酶在内质网中的活性高10倍,而脂肪酶在乙醛酸循环体膜中的活性高50倍。细胞色素还原酶在内质网中的活性仅高2倍,表明它们是这两种膜的成分。对乙醛酸循环体膜悬浮液进行的差示光谱分析显示存在一种类似于内质网中发现的b5型细胞色素。由于乙醛酸循环体膜显然源自内质网,因此在生物发生过程中,内质网的这些成分很可能会整合到乙醛酸循环体膜中。涉及辅酶NADH或CoA的酶活性在破碎的乙醛酸循环体中可检测到,但在完整的乙醛酸循环体中则检测不到。因此,细胞器内酶的辅酶似乎无法穿过膜。