吉林农业大学学报
吉林農業大學學報
길임농업대학학보
JOURNAL OF JILIN AGRICUL TURAL UNIVERSITY
2015年
2期
211-215,220
,共6页
吕萌%王爽%闫广谋%冯新%顾敬敏%雷连成
呂萌%王爽%閆廣謀%馮新%顧敬敏%雷連成
려맹%왕상%염엄모%풍신%고경민%뢰련성
噬菌体裂解酶%大肠杆菌%绿脓杆菌%原核表达
噬菌體裂解酶%大腸桿菌%綠膿桿菌%原覈錶達
서균체렬해매%대장간균%록농간균%원핵표체
phage lyase%Escherichia coli(E. coli)%Pseudomonas aeruginosa(P. aeruginosa)%pro-karyotic expression
前期分离得到1株具有较强裂解能力的大肠杆菌噬菌体vB_EcoM?ep3。测序后发现,噬菌体vB_EcoM?ep3的裂解酶基因在大肠杆菌噬菌体中尚未报道,能够编码一种新的裂解酶,并与绿脓杆菌噬菌体裂解酶具有很高同源性。为了探讨该裂解酶对大肠杆菌和绿脓杆菌的裂解活性,克隆了vB_EcoM?ep3的裂解酶基因,经原核表达和纯化,体外评价了Lysep3裂解活性。结果表明:克隆裂解酶基因Lysep3长为492 bp;表达蛋白分子质量为17?7 ku;裂解酶单独作用时,对大肠杆菌和绿脓杆菌均不能裂解,但是能够显著抑制生长;与柠檬酸配合使用(0?5 mg/mL终浓度的Lysep3和0?5 mmol/L终浓度的柠檬酸),对大肠杆菌和绿脓杆菌均表现出较好的裂解能力,作用从2~24 h持续有效,细菌数量分别下降7?2倍和17?3倍。该结果表明,vB_EcoM?ep3的裂解酶不但在基因序列上与绿脓杆菌存在进化关系,在功能上也具有相关性。该研究为解析裂解酶结构与功能的关系提供了一个良好的例证,同时有助于裂解酶的广谱性改造。
前期分離得到1株具有較彊裂解能力的大腸桿菌噬菌體vB_EcoM?ep3。測序後髮現,噬菌體vB_EcoM?ep3的裂解酶基因在大腸桿菌噬菌體中尚未報道,能夠編碼一種新的裂解酶,併與綠膿桿菌噬菌體裂解酶具有很高同源性。為瞭探討該裂解酶對大腸桿菌和綠膿桿菌的裂解活性,剋隆瞭vB_EcoM?ep3的裂解酶基因,經原覈錶達和純化,體外評價瞭Lysep3裂解活性。結果錶明:剋隆裂解酶基因Lysep3長為492 bp;錶達蛋白分子質量為17?7 ku;裂解酶單獨作用時,對大腸桿菌和綠膿桿菌均不能裂解,但是能夠顯著抑製生長;與檸檬痠配閤使用(0?5 mg/mL終濃度的Lysep3和0?5 mmol/L終濃度的檸檬痠),對大腸桿菌和綠膿桿菌均錶現齣較好的裂解能力,作用從2~24 h持續有效,細菌數量分彆下降7?2倍和17?3倍。該結果錶明,vB_EcoM?ep3的裂解酶不但在基因序列上與綠膿桿菌存在進化關繫,在功能上也具有相關性。該研究為解析裂解酶結構與功能的關繫提供瞭一箇良好的例證,同時有助于裂解酶的廣譜性改造。
전기분리득도1주구유교강렬해능력적대장간균서균체vB_EcoM?ep3。측서후발현,서균체vB_EcoM?ep3적렬해매기인재대장간균서균체중상미보도,능구편마일충신적렬해매,병여록농간균서균체렬해매구유흔고동원성。위료탐토해렬해매대대장간균화록농간균적렬해활성,극륭료vB_EcoM?ep3적렬해매기인,경원핵표체화순화,체외평개료Lysep3렬해활성。결과표명:극륭렬해매기인Lysep3장위492 bp;표체단백분자질량위17?7 ku;렬해매단독작용시,대대장간균화록농간균균불능렬해,단시능구현저억제생장;여저몽산배합사용(0?5 mg/mL종농도적Lysep3화0?5 mmol/L종농도적저몽산),대대장간균화록농간균균표현출교호적렬해능력,작용종2~24 h지속유효,세균수량분별하강7?2배화17?3배。해결과표명,vB_EcoM?ep3적렬해매불단재기인서렬상여록농간균존재진화관계,재공능상야구유상관성。해연구위해석렬해매결구여공능적관계제공료일개량호적예증,동시유조우렬해매적엄보성개조。
An E. coli phage vB_EcoM?ep3 with good lysis ability was isolated in early experiments. We found an unreported lyase gene(Lysep3)could encode a novel lyase in E. coli phage showing high homology with P. aeruginosa phage lyase after the sequence analysis. To explore lysis activity of Lysep3 in P. aeruginosa and E. coli, gene cloning, prokaryotic expression, protein purification and lysis activity determination in vitro were performed. Results showed that length of lyase gene is 492 bp and protein molecular mass is 17?7 ku. When using Lysep3 (0?5 mg/mL) alone, P. aerugi?nosa and E. coli were not lysed while growth could be significantly inhibited. When using Lysep3 and citric acid (0?5 mmol/L) in combination, better lysis ability was displayed ( with continual effect from 2 h to 24 h) ,and quantity of bacteria decreased 7?2 times and 17?3 times respectively. Results suggested that the evolutionary relationship of lyase between vB_EcoM?ep3 and P. aeruginosaare re?presented in both gene sequence and function. These results not only provide strong evidence for the study on relationship between structure and function of lysine, but also contribute to the transforma?tion of a broad spectrum lyase.