Department of Biological Chemistry, The Hebrew University of Jerusalem, Jerusalem, Israel.
Plant Physiol. 1977 Feb;59(2):167-72. doi: 10.1104/pp.59.2.167.
The major Chlamydomonas reinhardi y-1 chloroplast membrane polypeptides-I + II, IV, V(a + b)-have been isolated by use of preparative sodium dodecyl sulfate-gel electrophoresis.Rabbit antisera prepared against these polypeptides interact with intact membranes as well as membrane fractions containing these specific antigens. Antisera against polypeptides I + II partially inactivate photosystem I. Antisera against polypeptide IV prevent inactivation of the Hill reaction and inhibit photooxidation of diphenylcarbazide with dichlorophenolindophenol as an electron acceptor. The protection of the Hill reaction by IV antiserum, measured with whole membranes, is partially hindered by the presence of V antiserum, which, by itself, causes inhibition of diphenylcarbazide photooxidation.We concluded that parts of the primary structure of these polypeptides are exposed in situ and can be recognized in whole membranes by antisera prepared against sodium dodecyl sulfate-denatured antigens. Polypeptides I and II, and polypeptides IV, Va, and Vb are associated with photosystem I and photosystem II, respectively.
已使用十二烷基硫酸钠-凝胶制备电泳法分离出主要的衣藻叶绿体膜多肽 I+II、IV、V(a+b)。针对这些多肽制备的兔抗血清与完整膜以及含有这些特异性抗原的膜部分相互作用。针对多肽 I+II 的抗血清部分失活光系统 I。针对多肽 IV 的抗血清可防止希尔反应失活,并抑制二氯酚靛酚作为电子受体的二苯卡巴肼光氧化。用整个膜测量时,IV 抗血清对希尔反应的保护作用部分受到 V 抗血清的阻碍,V 抗血清本身会导致二苯卡巴肼光氧化的抑制。我们得出结论,这些多肽的部分一级结构在原位暴露,并可通过针对十二烷基硫酸钠变性抗原制备的抗血清在整个膜中识别。多肽 I 和 II 以及多肽 IV、Va 和 Vb 分别与光系统 I 和光系统 II 相关。