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AN ANALYSIS OF CELLULAR AND SUBCELLULAR SYSTEMS WHICH TRANSFORM THE SPECIES CHARACTER OF ACID PHOSPHATASE IN ACETABULARIA

机译:蜕皮中酸性磷酸酶物种特征转化的细胞和亚细胞系统分析

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摘要

Several species-specific molecular forms of acid phosphatase are known to exist in the unicellular green alga Acetabularia. In graft combinations between cells of Acetabularia mediterranea (med) and Acicularia Schenckii (acic) the expression of the med phosphatase is dominant over acic phosphatase. There is good evidence that in such grafts the preexisting acic phosphatase is converted on the molecular level via an intermediate form to the med phosphatase. This conversion can be initiated by the transplantation of a med cell nucleus to an anucleate acic cell, but will also take place in grafts between anucleate med and anucleate acic cells, indicating that the direct participation of a cell nucleus is not required. An incomplete conversion of acic phosphatase, which terminates at the intermediate stage, is induced in acic cells by injection of a concentrated homogenate of med cytoplasm. A similar partial conversion occurs in vitro in a mixture of homogenates from med and acic cells. Subcellular particles, such as chloroplasts or mitochondria, can be removed from the homogenates by centrifugation without impairing the reactions leading to the intermediate phosphatase type. Experimental evidence suggests that the transformation of phosphatase types is enzymatically catalyzed and may involve the conjugation of small molecules with the phosphatase protein. It was shown, however, that sialic acid is not involved, since the incubation of med or acic homogenates with neuraminidase did not modify the electrophoretic mobility of either enzyme type. Another type of phosphatase, which occurs in Acetabularia erenulata (cren) and can be distinguished electrophoretically from the aforementioned types, is not subject to interaction. In various mono- and multi-nucleate graft combinations between cren cells on one hand, and med or acic cells on the other hand, the cren phosphatase is synthesized independently of the enzyme of the graft partner.
机译:已知酸性磷酸酶的几种物种特异性分子形式存在于单细胞绿藻棘藻中。在地中海Ac草(Acetabularia mediterranea)(中型)和Acicularia Schenckii(acic)之间的移植物中,med磷酸酶的表达高于acic phosphatase。有充分的证据表明,在此类嫁接物中,预先存在的酸性磷酸酶会在分子水平上通过中间形式转化为中等磷酸酶。这种转化可以通过将中型细胞核移植到无核的酸性细胞中来启动,但也将发生在无核的中性和无核的酸性细胞之间的移植物中,这表明不需要细胞核的直接参与。通过注入浓缩的 med 细胞质匀浆,在acic细胞中诱导终止于中间阶段的acic磷酸酶的不完全转化。在 med acic 细胞的匀浆混合物中,体外发生了类似的部分转化。可以通过离心从匀浆中除去亚细胞颗粒,例如叶绿体或线粒体,而不会损害导致中间磷酸酶类型的反应。实验证据表明,磷酸酶类型的转化是酶促催化的,可能涉及小分子与磷酸酶蛋白的结合。然而,结果表明,唾液酸不参与其中,因为将 med acic 匀浆与神经氨酸酶孵育不会改变任何一种酶的电泳迁移率。发生在 enerataularia erenulata cren )中的另一种磷酸酶类型,可以通过电泳与上述类型区别开来,无需相互作用。在一方面 cren 细胞与另一方面 med acic 细胞之间的各种单核和多核移植物组合中,< em> cren 磷酸酶的合成与移植物伴侣的酶无关。

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