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1
Formation in the dark, of virus-induced deoxyribonuclease activity in Anacystis nidulans, an obligate photoautotroph.在黑暗条件下,在专性光合自养生物集胞藻中形成病毒诱导的脱氧核糖核酸酶活性。
J Bacteriol. 1976 May;126(2):630-3. doi: 10.1128/jb.126.2.630-633.1976.
2
Effect of some environmental factors on cyanophage AS-1 development in Anacystis nidulans.某些环境因素对集胞藻6803中噬藻体AS-1生长的影响
Arch Microbiol. 1976 Oct 11;110(1):55-60. doi: 10.1007/BF00416969.
3
Metabolic aspects of LPP cyanophage replication in the cyanobacterium Plectonema boryanum.集胞藻噬菌体在鞘丝藻中复制的代谢方面
Biochim Biophys Acta. 1976 Mar 12;423(3):440-9. doi: 10.1016/0005-2728(76)90199-7.
4
Mutational analysis of dark endogenous metabolism in the blue-green bacterium Anacystis nidulans.蓝绿藻集胞藻中暗内源性代谢的突变分析。
J Bacteriol. 1974 Sep;119(3):677-83. doi: 10.1128/jb.119.3.677-683.1974.
5
Endogenous dark respiration of the blue-green alga, Plectonema boryanum.蓝绿藻鞘丝藻的内源性暗呼吸作用。
J Bacteriol. 1971 Apr;106(1):45-50. doi: 10.1128/jb.106.1.45-50.1971.
6
Photoreactivation of ultraviolet irradiated blue-green alga: Anacystis nidulans and cyanophage AS-1.紫外线照射的蓝绿藻:集胞藻和蓝噬菌体AS-1的光复活作用
Arch Virol. 1979;59(3):173-9. doi: 10.1007/BF01317413.
7
Effect of light on the attachment of cyanophage AS-1 to Anacystis nidulans.光照对噬藻体AS-1附着于集胞藻的影响。
J Bacteriol. 1979 Jan;137(1):667-9. doi: 10.1128/jb.137.1.667-669.1979.
8
Dark incubation causes reinitiation of cell cycle events in Anacystis nidulans.暗培养导致集胞藻细胞周期事件重新启动。
J Bacteriol. 1983 Mar;153(3):1315-21. doi: 10.1128/jb.153.3.1315-1321.1983.
9
Bacteriophage infection interferes with guanosine 3'-diphosphate-5'-diphosphate accumulation induced by energy and nitrogen starvation in the cyanobacterium Anacystis nidulans.噬菌体感染会干扰由能源和氮饥饿诱导的蓝藻集胞藻6803中鸟苷3'-二磷酸-5'-二磷酸的积累。
J Bacteriol. 1980 Dec;144(3):859-64. doi: 10.1128/jb.144.3.859-864.1980.
10
Changes in photosynthetic activity in the cyanobacterium Chlorogloea fritschii following transition from dark to light growth.蓝藻弗里氏绿球藻从黑暗生长转变为光照生长后光合活性的变化。
Biochim Biophys Acta. 1978 Feb 9;501(2):165-73. doi: 10.1016/0005-2728(78)90023-3.

引用本文的文献

1
Redox modulation of a phosphatase from Anacystis nidulans.蓝藻门鱼腥藻磷酸酶的氧化还原调节。
Planta. 1981 Aug;152(5):408-14. doi: 10.1007/BF00385356.
2
Isolation and properties of an isocitrate dehydrogenase from Anacystis nidulans.来自集胞藻6803的异柠檬酸脱氢酶的分离及性质
Arch Microbiol. 1981 Jul;129(5):331-4. doi: 10.1007/BF00406456.
3
Bacteriophage infection interferes with guanosine 3'-diphosphate-5'-diphosphate accumulation induced by energy and nitrogen starvation in the cyanobacterium Anacystis nidulans.噬菌体感染会干扰由能源和氮饥饿诱导的蓝藻集胞藻6803中鸟苷3'-二磷酸-5'-二磷酸的积累。
J Bacteriol. 1980 Dec;144(3):859-64. doi: 10.1128/jb.144.3.859-864.1980.
4
The postmaturational cleavage of 23 S ribosomal RNA in Anacystis nidulans is inhibited by infection with cyanophage AS-1.在集胞藻中,23 S核糖体RNA的成熟后切割受到蓝噬菌体AS-1感染的抑制。
Mol Biol Rep. 1976 Nov;3(2):139-42. doi: 10.1007/BF00423227.
5
Effect of light on the attachment of cyanophage AS-1 to Anacystis nidulans.光照对噬藻体AS-1附着于集胞藻的影响。
J Bacteriol. 1979 Jan;137(1):667-9. doi: 10.1128/jb.137.1.667-669.1979.

本文引用的文献

1
Some aspects of nuclease activity in Anacystis nidulans and other algae.集胞藻及其他藻类中核酸酶活性的某些方面。
Comp Biochem Physiol. 1967 Nov;23(2):361-71. doi: 10.1016/0010-406x(67)90392-1.
2
The level of a relatively purine-specific ribonuclease increases in virus-infected hypersensitive or mechanically injured tobacco leaves.在病毒感染的过敏或机械损伤的烟草叶片中,一种相对特异性针对嘌呤的核糖核酸酶的水平会升高。
Virology. 1972 May;48(2):337-41. doi: 10.1016/0042-6822(72)90044-x.
3
Isolation from Avena leaf tissues of a nuclease with the same type of specificity towards RNA and DNA. Accumulation of the enzyme during leaf senescence.从燕麦叶片组织中分离出一种对RNA和DNA具有相同特异性的核酸酶。该酶在叶片衰老过程中积累。
Biochim Biophys Acta. 1971 Mar 25;232(3):472-83. doi: 10.1016/0005-2787(71)90601-0.
4
Metabolism of glucose by unicellular blue-green algae.单细胞蓝藻对葡萄糖的代谢
Arch Mikrobiol. 1972;87(4):303-22. doi: 10.1007/BF00409131.
5
Purification and properties of a phosphodiesterase from Avena leaf tissues.
Biochim Biophys Acta. 1970 Jun 10;206(3):392-403. doi: 10.1016/0005-2744(70)90155-5.
6
Control of macromolecular composition and cell division in the blue-green algae Anacystis nidulans.
J Gen Microbiol. 1974 Aug;83(2):399-405. doi: 10.1099/00221287-83-2-399.
7
Mutational analysis of dark endogenous metabolism in the blue-green bacterium Anacystis nidulans.蓝绿藻集胞藻中暗内源性代谢的突变分析。
J Bacteriol. 1974 Sep;119(3):677-83. doi: 10.1128/jb.119.3.677-683.1974.
8
Isolation and characterization of AS-1, a phycovirus infecting the blue-green algae, Anacystis nidulans and Synechococcus cedrorum.AS-1的分离与特性研究,AS-1是一种感染蓝藻(集胞藻和聚球藻)的藻病毒。
Virology. 1972 Jan;47(1):105-13. doi: 10.1016/0042-6822(72)90243-7.
9
Control of gene expression in blue-green algae.蓝藻中基因表达的调控
Nature. 1975 Feb 20;253(5493):650-1. doi: 10.1038/253650a0.

在黑暗条件下,在专性光合自养生物集胞藻中形成病毒诱导的脱氧核糖核酸酶活性。

Formation in the dark, of virus-induced deoxyribonuclease activity in Anacystis nidulans, an obligate photoautotroph.

作者信息

Udvardy J, Sivok B, Borbely G, Farkas G L

出版信息

J Bacteriol. 1976 May;126(2):630-3. doi: 10.1128/jb.126.2.630-633.1976.

DOI:10.1128/jb.126.2.630-633.1976
PMID:177400
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC233195/
Abstract

In Anacystis nidulans, upon infection with cyanophage AS-1, after a lag period of 1 h the level of deoxyribonuclease (DNase) activity increaded rapidly up to 15- to 20-fold in 4 to 5 h in the light. In contrast, the ribonuclease and phosphomonoesterase activities increased significantly only 4 to 5 h after infection, i.e. as late as 1 h prior to lysis. In complete darkness, the nuclease levels remained unaltered. However, when the infected cells were exposed to light for 1 or 2 h after infection, the DNase level increased essentially to the same extent in the dark as in continuous light, although the complete replication cycle of the virus was impaired in the dark and cells lysed only in the continuously illuminated cultures. Inhibition of photosystem II with 3-(3,4-dichlorophenyl)-1-dimethylurea during the early illumination period strongly decreased the subsequent, infection-dependent increase in DNase activity in the dark. The virus-induced increase in DNase activity was also inhibited by chloramphenicol. The data suggest that, in spite of the obligate photoautotrophic nature of A. nidulans, dark metabolism is able to support fully the formation of some specific proteins if the triggering of their synthesis takes place in light.

摘要

在集胞藻中,用噬菌体AS-1感染后,经过1小时的延迟期,在光照下,脱氧核糖核酸酶(DNase)活性水平在4至5小时内迅速增加至15至20倍。相比之下,核糖核酸酶和磷酸单酯酶活性仅在感染后4至5小时,即裂解前1小时才显著增加。在完全黑暗中,核酸酶水平保持不变。然而,当感染后的细胞在感染后暴露于光照1或2小时,尽管病毒的完整复制周期在黑暗中受损且细胞仅在持续光照的培养物中裂解,但DNase水平在黑暗中的增加幅度与在持续光照下基本相同。在早期光照期间用3-(3,4-二氯苯基)-1-二甲基脲抑制光系统II,强烈降低了随后在黑暗中感染依赖性的DNase活性增加。氯霉素也抑制了病毒诱导的DNase活性增加。数据表明,尽管集胞藻具有专性光合自养的性质,但如果某些特定蛋白质的合成触发发生在光照下,黑暗代谢能够充分支持它们的形成。