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钙离子缺乏对鼠疫耶尔森菌大分子合成及腺苷酸能荷的影响

Consequences of Ca2+ deficiency on macromolecular synthesis and adenylate energy charge in Yersinia pestis.

作者信息

Zahorchak R J, Charnetzky W T, Little R V, Brubaker R R

出版信息

J Bacteriol. 1979 Sep;139(3):792-9. doi: 10.1128/jb.139.3.792-799.1979.

DOI:10.1128/jb.139.3.792-799.1979
PMID:479109
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC218024/
Abstract

A 37 but not 26 degrees C virulent Yersinia pestis is known to require at least 2.5 mM Ca2+ for growth; this requirement is potentiated by Mg2+. After shift of log-phase cells (doubling time of 2 h) from 26 to 37 degrees C in Ca2+-deficient medium, shutoff of net ribonucleic acid synthesis preceded that of protein and cell mass. With 2.5 mM Mg2+, about two doublings in cell mass and number occurred before restriction with synthesis of sufficient deoxyribonucleic acid to account for initiation and termination of two postshift rounds of chromosome replication. Temperature shift with 20 mMMg2+ resulted in a single doubling of cell mass and number with one round of chromosome replication. Subsequent to shutoff of ribonucleic acid accumulation, ribonucleoside but not deoxyribonucleoside triphosphate pools became reduced to about 50% of normal values and the adenylate energy change fell from about 0.8, typical of growing cells, to about 0.6. Excretion of significant concentrations of adenine nucleotides under both permissive and restrictive conditions was observed. Only trace levels (less than 0.01 microM ol/g [dry weight]) of guaninosine 5'-diphosphate 3'-diphosphate accumulated under restrictive or permissive conditions; guanosine 5'-triphosphate 3'-diphosphate was not detected. Return of fully restricted cells from 37 to 26 degrees C with Ca2+ resulted in prompt growth, whereas addition of Ca2+ at 37 degrees C was ineffective. This finding indicates that the observed temperature-sensitive lesion in ribonucleic acid synthesis that results in restriction can be prevented but not reversed by cultivation with Ca2+.

摘要

已知毒力型鼠疫耶尔森氏菌在37℃而非26℃下生长时至少需要2.5 mM的Ca2+;Mg2+可增强这种需求。在缺乏Ca2+的培养基中,对数期细胞(倍增时间为2小时)从26℃转移至37℃后,核糖核酸净合成的停止先于蛋白质和细胞质量的停止。在有2.5 mM Mg2+的情况下,细胞质量和数量大约增加了两倍,然后才限制脱氧核糖核酸的合成,以满足转移后两轮染色体复制的起始和终止需求。在20 mM Mg2+条件下进行温度转移,导致细胞质量和数量增加了一倍,并进行了一轮染色体复制。在核糖核酸积累停止后,核糖核苷三磷酸池而非脱氧核苷三磷酸池减少至正常值的约50%,腺苷酸能量变化从生长细胞典型的约0.8降至约0.6。在允许和限制条件下均观察到有大量腺嘌呤核苷酸排出。在限制或允许条件下,仅积累了痕量水平(小于0.01 μmol/g[干重])的鸟苷5'-二磷酸3'-二磷酸;未检测到鸟苷5'-三磷酸3'-二磷酸。将完全受限制的细胞在有Ca2+的情况下从37℃恢复到26℃会导致迅速生长,而在37℃添加Ca2+则无效。这一发现表明,观察到的导致限制的核糖核酸合成中的温度敏感损伤可通过添加Ca2+培养来预防,但不能逆转。

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