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芽枝霉游动孢子萌发过程中核糖核酸和蛋白质合成的重新激活以及核糖体核帽的作用

Reactivation of ribonucleic acid and protein synthesis during germination of Blastocladiella zoospores and the role of the ribosomal nuclear cap.

作者信息

Lovett J S

出版信息

J Bacteriol. 1968 Oct;96(4):962-9. doi: 10.1128/jb.96.4.962-969.1968.

Abstract

Freshly harvested zoospores of Blastocladiella emersonii begin to germinate about 15 min after inoculation into a defined growth medium at a density of 10(6) zoospores per ml. Flagellum retraction accompanies encystment, and dispersal of the ribosomal nuclear cap takes place shortly thereafter. The primary rhizoid begins to emerge at 25 to 30 min and starts to branch at ca. 60 min. The first nuclear division occurs between 120 and 190 min. The dry weight per cell increases linearly after 60 min, whereas the deoxyribonucleic acid per cell doubles between 120 and 240 min. A linear increase in total ribonucleic acid (RNA) is detectable beginning at 40 to 45 min, and in total protein beginning at 80 min; neither process is interrupted during nuclear division. Encystment and nuclear cap disorganization are associated with a sharp rise in the rates of precursor incorporation into RNA and protein. Cycloheximide at 20 mug/ml prevents leucine incorporation at all stages and inhibits development beyond the earliest encystment stage. Actinomycin D at 25 mug to 50 mug/ml prevents uracil incorporation, but it has no effect on leucine incorporation or development until 40 to 45 min. At the latter stage, actinomycin D causes a sharp developmental arrest and begins to inhibit leucine incorporation. It is concluded that early protein synthesis must occur on the ribosomes formed during the prior growth phase and conserved through the zoospore stage in the nuclear cap. The results further indicate that this synthesis is dependent upon messenger RNA already present in the zoospore before germination.

摘要

将新收获的艾美球囊霉游动孢子以每毫升10(6)个游动孢子的密度接种到特定生长培养基中后,约15分钟开始萌发。鞭毛缩回伴随着包囊形成,此后不久核糖体核帽散开。初生假根在25至30分钟开始出现,并在约60分钟开始分支。第一次核分裂发生在120至190分钟之间。60分钟后每个细胞的干重呈线性增加,而每个细胞的脱氧核糖核酸在120至240分钟之间翻倍。从40至45分钟开始可检测到总核糖核酸(RNA)呈线性增加,从80分钟开始总蛋白质呈线性增加;在核分裂过程中这两个过程均未中断。包囊形成和核帽解体与前体掺入RNA和蛋白质的速率急剧上升有关。20微克/毫升的放线菌酮在所有阶段均阻止亮氨酸掺入,并抑制发育至最早的包囊形成阶段之后。25微克至50微克/毫升的放线菌素D阻止尿嘧啶掺入,但直到40至45分钟之前对亮氨酸掺入或发育没有影响。在后期,放线菌素D导致发育急剧停滞并开始抑制亮氨酸掺入。得出的结论是,早期蛋白质合成必须发生在先前生长阶段形成并通过核帽中的游动孢子阶段保留下来的核糖体上。结果还表明,这种合成依赖于萌发前游动孢子中已存在的信使RNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7384/252405/ccae2327a175/jbacter00397-0138-a.jpg

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