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脯氨酸氧化酶(PutA)参与黄单胞菌的程序性细胞死亡。

Involvement of proline oxidase (PutA) in programmed cell death of Xanthomonas.

作者信息

Wadhawan Surbhi, Gautam Satyendra, Sharma Arun

机构信息

Food Technology Division, Bhabha Atomic Research Centre, Mumbai, India.

出版信息

PLoS One. 2014 May 1;9(5):e96423. doi: 10.1371/journal.pone.0096423. eCollection 2014.

Abstract

Xanthomonas campestris strains have been reported to undergo programmed cell death (PCD) in a protein rich medium. Protein hydrolysates used in media such as nutrient broth comprise of casein digest with abundance of proline and glutamate. In the current study, X. campestris pv. campestris (Xcc) cells displayed PCD when grown in PCD inducing medium (PIM) containing casein tryptic digest. This PCD was also observed in PCD non-inducing carbohydrate rich medium (PNIM) fortified with either proline or proline along with glutamate. Surprisingly, no PCD was noticed in PNIM fortified with glutamate alone. Differential role of proline or glutamate in inducing PCD in Xcc cells growing in PNIM was studied. It was found that an intermediate product of this oxidation was involved in initiation of PCD. Proline oxidase also called as proline utilization A (PutA), catalyzes the two step oxidation of proline to glutamate. Interestingly, higher PutA activity was noticed in cells growing in PIM, and PCD was found to be inhibited by tetrahydro-2-furoic acid, a competitive inhibitor of this enzyme. Further, PCD was abolished in Xcc ΔputA strain generated using a pKNOCK suicide plasmid, and restored in Xcc ΔputA strain carrying functional PutA in a plasmid vector. Xanthomonas cells growing in PIM also displayed increased generation of ROS, as well as cell filamentation (a probable indication of SOS response). These filamented cells also displayed enhanced caspase-3-like activity during in situ labeling using a fluorescent tagged caspase-3 inhibitor (FITC-DEVD-FMK). The extent of PCD associated markers such as DNA damage, phosphatidylserine externalization and membrane depolarization were found to be significantly enhanced in wild type cells, but drastically reduced in Xcc ΔputA cells. These findings thus establish the role of PutA mediated proline oxidation in regulating death in stressed Xanthomonas cells.

摘要

据报道,野油菜黄单胞菌菌株在富含蛋白质的培养基中会经历程序性细胞死亡(PCD)。诸如营养肉汤等培养基中使用的蛋白水解物包含大量脯氨酸和谷氨酸的酪蛋白消化物。在当前研究中,野油菜黄单胞菌野油菜致病变种(Xcc)细胞在含有酪蛋白胰蛋白酶消化物的PCD诱导培养基(PIM)中生长时表现出PCD。在添加了脯氨酸或脯氨酸与谷氨酸的富含碳水化合物的PCD非诱导培养基(PNIM)中也观察到了这种PCD。令人惊讶的是,在仅添加谷氨酸的PNIM中未观察到PCD。研究了脯氨酸或谷氨酸在PNIM中生长的Xcc细胞诱导PCD中的不同作用。发现这种氧化的中间产物参与了PCD的起始。脯氨酸氧化酶也称为脯氨酸利用A(PutA),催化脯氨酸两步氧化为谷氨酸。有趣的是,在PIM中生长的细胞中观察到较高的PutA活性,并且发现PCD被该酶的竞争性抑制剂四氢-2-呋喃甲酸抑制。此外,使用pKNOCK自杀质粒产生的Xcc ΔputA菌株中PCD被消除,而在质粒载体中携带功能性PutA的Xcc ΔputA菌株中PCD得以恢复。在PIM中生长的黄单胞菌细胞还表现出活性氧的产生增加以及细胞丝化(可能是SOS反应的迹象)。在使用荧光标记的半胱天冬酶-3抑制剂(FITC-DEVD-FMK)进行原位标记期间,这些丝化细胞还表现出增强的半胱天冬酶-3样活性。发现与PCD相关的标志物如DNA损伤、磷脂酰丝氨酸外化和膜去极化的程度在野生型细胞中显著增强,但在Xcc ΔputA细胞中急剧降低。因此,这些发现确立了PutA介导的脯氨酸氧化在调节应激黄单胞菌细胞死亡中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d221/4006831/3f27f11b8a85/pone.0096423.g001.jpg

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