Hochstadt Ozer J, Saz A K
J Bacteriol. 1970 Apr;102(1):64-71. doi: 10.1128/jb.102.1.64-71.1970.
Nonreverting beta-lactamase-negative strains were isolated from the beta-lactamase-constitutive strain, Bacillus cereus 569 H. These strains differed from both beta-lactamase-inducible and -constitutive strains not only in failure to produce beta-lactamase but also in failure to autolyze on aging, delayed sporulation, and failure to release free spores from sporangia when produced. The addition of B. cereus beta-lactamase of 15% purity to a final concentration of 10 IU/ml stimulates sporulation and particularly the release of free spores in culture from sporangia of strain 569 (inducible wild-type), 569/H (constitutive mutant of 569), and HPen(-), a nonreverting beta-lactamase strain isolated from 569/H in this laboratory. Cultures of HPen(-) did not release free spores without this treatment. Similar stimulation of sporulation and spore release by beta-lactamase from B. cereus were observed in another beta-lactamase-negative strain derived from 569/H as well as in certain sporogeny mutants of B. subtilis. The beta-lactamase preparation used in these experiments was free of peptidases, proteases, and autolysins capable of solubilizing wall from vegetative cells. These results, taken with our previous finding that a soluble peptidoglycan inducer becomes available in cultures of B. cereus only at sporulation and that normal derepression of beta-lactamase accompanies normal sporulation, suggest that beta-lactamase in B. cereus may be involved in peptidoglycan metabolism during sporulation and possibly the breakdown of sporangial wall with the concomitant release of mature spores.
非回复性β-内酰胺酶阴性菌株是从β-内酰胺酶组成型菌株蜡样芽孢杆菌569H中分离得到的。这些菌株与β-内酰胺酶诱导型和组成型菌株不同,不仅在于它们不产生β-内酰胺酶,还在于它们在老化时不自溶、孢子形成延迟,以及产生孢子时不能从孢子囊中释放游离孢子。添加终浓度为10 IU/ml的纯度为15%的蜡样芽孢杆菌β-内酰胺酶,可刺激孢子形成,特别是刺激569菌株(诱导型野生型)、569/H菌株(569的组成型突变体)和HPen(-)菌株(本实验室从569/H中分离得到的非回复性β-内酰胺酶菌株)的培养物从孢子囊中释放游离孢子。未经此处理,HPen(-)菌株的培养物不会释放游离孢子。在另一个源自569/H的β-内酰胺酶阴性菌株以及枯草芽孢杆菌的某些孢子形成突变体中,也观察到蜡样芽孢杆菌β-内酰胺酶对孢子形成和孢子释放有类似的刺激作用。这些实验中使用的β-内酰胺酶制剂不含能够溶解营养细胞壁的肽酶、蛋白酶和自溶素。这些结果,结合我们之前的发现,即蜡样芽孢杆菌培养物中仅在孢子形成时才会出现可溶性肽聚糖诱导剂,且β-内酰胺酶的正常去阻遏伴随着正常的孢子形成,表明蜡样芽孢杆菌中的β-内酰胺酶可能参与孢子形成过程中的肽聚糖代谢,并且可能参与孢子囊壁的分解以及成熟孢子的伴随释放。