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芽孢杆菌中正常的染色体分离以及芽孢形成的起始都需要spo0J。

spo0J is required for normal chromosome segregation as well as the initiation of sporulation in Bacillus subtilis.

作者信息

Ireton K, Gunther N W, Grossman A D

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

J Bacteriol. 1994 Sep;176(17):5320-9. doi: 10.1128/jb.176.17.5320-5329.1994.

Abstract

The spo0J gene of Bacillus subtilis is required for the initiation of sporulation. We show that the sporulation defect caused by null mutations in spo0J is suppressed by a null mutation in the gene located directly upstream from spo0J, soj (suppressor of spo0J). These results indicate that Soj inhibits the initiation of sporulation and that Spo0J antagonizes that inhibition. Further genetic experiments indicated that Soj ultimately affects sporulation by inhibiting the activation (phosphorylation) of the developmental transcription factor encoded by spo0A. In addition, the temperature-sensitive sporulation phenotype caused by the ftsA279 (spoIIN279) mutation was partly suppressed by the soj null mutation, indicating that FtsA might also affect the activity of Soj. Soj and Spo0J are known to be similar in sequence to a family of proteins involved in plasmid partitioning, including ParA and ParB of prophage P1, SopA and SopB of F, and IncC and KorB of RK2, spo0J was found to be required for normal chromosome partitioning as well as for sporulation. spo0J null mutants produced a significant proportion of anucleate cells during vegetative growth. The dual functions of Spo0J could provide a mechanism for regulating the initiation of sporulation in response to activity of the chromosome partition machinery.

摘要

枯草芽孢杆菌的spo0J基因是芽孢形成起始所必需的。我们发现,spo0J基因的无效突变所导致的芽孢形成缺陷,可被位于spo0J基因直接上游的soj(spo0J的抑制子)基因的无效突变所抑制。这些结果表明,Soj抑制芽孢形成的起始,而Spo0J拮抗这种抑制作用。进一步的遗传学实验表明,Soj最终通过抑制由spo0A编码的发育转录因子的激活(磷酸化)来影响芽孢形成。此外,ftsA279(spoIIN279)突变所导致的温度敏感型芽孢形成表型,也被soj无效突变部分抑制,这表明FtsA可能也会影响Soj的活性。已知Soj和Spo0J在序列上与一类参与质粒分配的蛋白质相似,包括原噬菌体P1的ParA和ParB、F质粒的SopA和SopB,以及RK2质粒的IncC和KorB,研究发现spo0J对于正常的染色体分配以及芽孢形成都是必需的。spo0J无效突变体在营养生长期间产生了相当比例的无核细胞。Spo0J的双重功能可能为响应染色体分配机制的活性来调节芽孢形成的起始提供一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f98/196717/1964c5b1dd61/jbacter00035-0142-a.jpg

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