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“外向内”萌发途径在……中的保守性

Conservation of the "Outside-in" Germination Pathway in .

作者信息

Bhattacharjee Disha, Sorg Joseph A

机构信息

Department of Biology, Texas A&M University, College Station, TX, United States.

出版信息

Front Microbiol. 2018 Oct 17;9:2487. doi: 10.3389/fmicb.2018.02487. eCollection 2018.

Abstract

spore germination is initiated in response to certain bile acids and amino acids (e.g., glycine). Though the amino acid-recognizing germinant receptor is unknown, the bile acid germinant receptor is the germination-specific, subtilisin-like pseudoprotease, CspC. In the CspB, CspA, and CspC proteins are involved in spore germination. Of these, only CspB is predicted to have catalytic activity because the residues important for catalysis are mutated in the and sequence. The CspB, CspA, and CspC proteins are likely localized to the outer layers of the spore (e.g., the cortex or the coat layers) and not the inner membrane where the Ger-type germinant receptors are located. In , germination proceeds in an "outside-in" direction, instead of the "'inside-out" direction observed during the germination of spores. During spore germination, cortex fragments are released prior to the release of 2,4-dipicolinic acid (DPA) from the spore core. This is opposite to what occurs during spore germination. To understand if the mechanism spore germination is unique or if spores from other organisms germinate in a similar fashion, we analyzed the germination of spores. We find that spores release cortex fragments prior to DPA during germination and the DPA release from the spore core can be blocked by high concentrations of osmolytes. Moreover, we find that spores do not respond to steroid-like compounds (unlike the related and organisms), indicating that the mere presence of the Csp proteins does permit germination in response to steroid compounds. Our findings indicate that the "outside in" mechanism of spore germination observed in can be found in other bacteria suggesting that this mechanism is a novel pathway for endospore germination.

摘要

孢子萌发是对某些胆汁酸和氨基酸(如甘氨酸)作出的反应而启动的。虽然识别氨基酸的萌发受体尚不清楚,但胆汁酸萌发受体是萌发特异性的、枯草杆菌蛋白酶样假蛋白酶CspC。CspB、CspA和CspC蛋白参与孢子萌发。其中,只有CspB预计具有催化活性,因为对催化重要的残基在[具体位置1]和[具体位置2]序列中发生了突变。CspB、CspA和CspC蛋白可能定位于孢子的外层(如皮层或包被层),而不是Ger型萌发受体所在的内膜。在[具体菌种1]中,萌发沿“由外而内”的方向进行,而不是在[具体菌种2]孢子萌发过程中观察到的“由内而外”方向。在[具体菌种1]孢子萌发期间,皮层碎片在2,4 - 吡啶二羧酸(DPA)从孢子核心释放之前就被释放出来。这与[具体菌种2]孢子萌发期间发生的情况相反。为了了解[具体菌种1]孢子萌发机制是独特的,还是其他生物体的孢子以类似方式萌发,我们分析了[具体菌种1]孢子的萌发情况。我们发现,[具体菌种1]孢子在萌发期间在DPA之前释放皮层碎片,并且高浓度的渗透压剂可以阻止DPA从[具体菌种1]孢子核心释放。此外,我们发现[具体菌种1]孢子对类固醇样化合物无反应(与相关的[具体菌种2]和[具体菌种3]生物体不同),这表明仅仅存在Csp蛋白并不允许对类固醇化合物作出萌发反应。我们的研究结果表明,在[具体菌种1]中观察到的孢子萌发“由外而内”机制在其他细菌中也存在,这表明该机制是芽孢萌发的一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7da6/6199464/17f5f33925f7/fmicb-09-02487-g001.jpg

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