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It is time to authenticate the Microbiome Sciences with accredited educational programs and departments 现在是时候通过经认可的教育计划和部门对微生物组科学进行认证了
IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences Pub Date : 2023-12-01 DOI: 10.1371/journal.pbio.3002420
Nichole Ginnan, Seth R. Bordenstein
The Microbiome Sciences are at a crucial maturation stage. Scientists and educators should now view the Microbiome Sciences as a flourishing and autonomous discipline, creating degree programs and departments that are conducive to cohesive growth.
微生物组学正处于关键的成熟阶段。科学家和教育工作者现在应该将微生物组科学视为一个蓬勃发展的自主学科,创建有利于凝聚力增长的学位课程和部门。
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引用次数: 0
Towards detailed predictions of coastal ecosystem function under climate change 努力详细预测气候变化下的沿岸生态系统功能
IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences Pub Date : 2023-12-01 DOI: 10.1371/journal.pbio.3002430
Diego R. Barneche, Renato A. Morais
The complex ways in which ongoing warming will restructure ecosystems remains poorly understood. A new simulation study in PLOS Biology suggests that expected changes in food resources for marine consumers will outpace the direct, pervasive effects of predicted +2.5°C warming.
持续变暖将以何种复杂的方式重构生态系统,人们仍知之甚少。PLOS Biology上的一项新的模拟研究表明,海洋消费者食物资源的预期变化将超过预测的+2.5°C变暖的直接、普遍影响。
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引用次数: 0
Editorial Note: The Communication Factor EDF and the Toxin-Antitoxin Module mazEF Determine the Mode of Action of Antibiotics. 编者按:通讯因子EDF和毒素抗毒素模块mazEF决定了抗生素的作用模式。
IF 7.8 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Pub Date : 2023-09-18 eCollection Date: 2023-09-01 DOI: 10.1371/journal.pbio.3002325
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引用次数: 0
SEC14-like condensate phase transitions at plasma membranes regulate root growth in Arabidopsis. 质膜上类似SEC14的缩合物相变调节拟南芥根系的生长。
IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences Pub Date : 2023-09-18 eCollection Date: 2023-09-01 DOI: 10.1371/journal.pbio.3002305
Chen Liu, Andriani Mentzelopoulou, Fotini Papagavriil, Prashanth Ramachandran, Artemis Perraki, Lucas Claus, Sebastian Barg, Peter Dörmann, Yvon Jaillais, Philipp Johnen, Eugenia Russinova, Electra Gizeli, Gabriel Schaaf, Panagiotis Nikolaou Moschou

Protein function can be modulated by phase transitions in their material properties, which can range from liquid- to solid-like; yet, the mechanisms that drive these transitions and whether they are important for physiology are still unknown. In the model plant Arabidopsis, we show that developmental robustness is reinforced by phase transitions of the plasma membrane-bound lipid-binding protein SEC14-like. Using imaging, genetics, and in vitro reconstitution experiments, we show that SEC14-like undergoes liquid-like phase separation in the root stem cells. Outside the stem cell niche, SEC14-like associates with the caspase-like protease separase and conserved microtubule motors at unique polar plasma membrane interfaces. In these interfaces, SEC14-like undergoes processing by separase, which promotes its liquid-to-solid transition. This transition is important for root development, as lines expressing an uncleavable SEC14-like variant or mutants of separase and associated microtubule motors show similar developmental phenotypes. Furthermore, the processed and solidified but not the liquid form of SEC14-like interacts with and regulates the polarity of the auxin efflux carrier PINFORMED2. This work demonstrates that robust development can involve liquid-to-solid transitions mediated by proteolysis at unique plasma membrane interfaces.

蛋白质的功能可以通过其材料性质的相变来调节,材料性质可以从液态到固态;然而,驱动这些转变的机制以及它们对生理学是否重要仍然未知。在模式植物拟南芥中,我们发现质膜结合的脂质结合蛋白SEC14-like的相变增强了发育的稳健性。利用成像、遗传学和体外重建实验,我们发现SEC14-like在根干细胞中经历液相分离。在干细胞生态位之外,SEC14样与胱天蛋白酶样蛋白酶分离酶结合,并在独特的极性质膜界面上保守微管马达。在这些界面中,SEC14-like通过分离酶进行处理,从而促进其从液体到固体的转变。这种转变对根系发育很重要,因为表达分离酶和相关微管马达的不可清除的SEC14样变体或突变体的系表现出相似的发育表型。此外,加工和固化但不是液体形式的SEC14-like与生长素流出载体PINFORMED2相互作用并调节其极性。这项工作表明,稳健的发展可能涉及在独特的质膜界面上通过蛋白水解介导的液体到固体的转变。
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引用次数: 0
Selective retention of dysfunctional mitochondria during asymmetric cell division in yeast. 酵母不对称细胞分裂过程中功能失调线粒体的选择性保留。
IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences Pub Date : 2023-09-18 eCollection Date: 2023-09-01 DOI: 10.1371/journal.pbio.3002310
Xenia Chelius, Veronika Bartosch, Nathalie Rausch, Magdalena Haubner, Jana Schramm, Ralf J Braun, Till Klecker, Benedikt Westermann

Decline of mitochondrial function is a hallmark of cellular aging. To counteract this process, some cells inherit mitochondria asymmetrically to rejuvenate daughter cells. The molecular mechanisms that control this process are poorly understood. Here, we made use of matrix-targeted D-amino acid oxidase (Su9-DAO) to selectively trigger oxidative damage in yeast mitochondria. We observed that dysfunctional mitochondria become fusion-incompetent and immotile. Lack of bud-directed movements is caused by defective recruitment of the myosin motor, Myo2. Intriguingly, intact mitochondria that are present in the same cell continue to move into the bud, establishing that quality control occurs directly at the level of the organelle in the mother. The selection of healthy organelles for inheritance no longer works in the absence of the mitochondrial Myo2 adapter protein Mmr1. Together, our data suggest a mechanism in which the combination of blocked fusion and loss of motor protein ensures that damaged mitochondria are retained in the mother cell to ensure rejuvenation of the bud.

线粒体功能下降是细胞衰老的标志。为了抵消这一过程,一些细胞不对称地继承线粒体,使子细胞恢复活力。控制这一过程的分子机制尚不清楚。在这里,我们利用基质靶向D-氨基酸氧化酶(Su9-DAO)选择性触发酵母线粒体的氧化损伤。我们观察到功能失调的线粒体变得融合无能和不稳定。缺乏芽定向运动是由肌球蛋白运动Myo2的募集缺陷引起的。有趣的是,存在于同一细胞中的完整线粒体继续进入芽中,从而确定质量控制直接发生在母亲细胞器的水平上。在缺乏线粒体Myo2衔接蛋白Mmr1的情况下,选择健康细胞器进行遗传不再有效。总之,我们的数据表明了一种机制,在这种机制中,融合受阻和运动蛋白损失的结合确保了受损的线粒体保留在母细胞中,以确保芽的再生。
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引用次数: 0
Asymmetric connections with starburst amacrine cells underlie the upward motion selectivity of J-type retinal ganglion cells. 与星突无长突细胞的不对称连接是J型视网膜神经节细胞向上运动选择性的基础。
IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences Pub Date : 2023-09-18 eCollection Date: 2023-09-01 DOI: 10.1371/journal.pbio.3002301
Bo Wang, Yifeng Zhang

Motion is an important aspect of visual information. The directions of visual motion are encoded in the retina by direction-selective ganglion cells (DSGCs). ON-OFF DSGCs and ON DSGCs co-stratify with starburst amacrine cells (SACs) in the inner plexiform layer and depend on SACs for their direction selectivity. J-type retinal ganglion cells (J-RGCs), a type of OFF DSGCs in the mouse retina, on the other hand, do not co-stratify with SACs, and how direction selectivity in J-RGCs emerges has not been understood. Here, we report that both the excitatory and inhibitory synaptic inputs to J-RGCs are direction-selective (DS), with the inhibitory inputs playing a more important role for direction selectivity. The DS inhibitory inputs come from SACs, and the functional connections between J-RGCs and SACs are spatially asymmetric. Thus, J-RGCs and SACs form functionally important synaptic contacts even though their dendritic arbors show little overlap. These findings underscore the need to look beyond the neurons' stratification patterns in retinal circuit studies. Our results also highlight the critical role of SACs for retinal direction selectivity.

运动是视觉信息的一个重要方面。视觉运动的方向在视网膜中由方向选择神经节细胞(DSGC)编码。ON-OFF DSGC和ON-DSGC与内部丛状层中的星突无长突细胞(SAC)共同分层,并依赖于SAC的方向选择性。另一方面,J型视网膜神经节细胞(J-RGCs)是小鼠视网膜中的一种OFF DSGC,与SAC不共层,并且J-RGCs中的方向选择性是如何出现的还不清楚。在这里,我们报道了J-RGCs的兴奋性和抑制性突触输入都是方向选择性的(DS),其中抑制性输入在方向选择性中起着更重要的作用。DS抑制输入来自SAC,J-RGCs和SAC之间的功能连接在空间上是不对称的。因此,J-RGCs和SAC形成了功能上重要的突触接触,尽管它们的树突轴几乎没有重叠。这些发现强调了在视网膜回路研究中超越神经元分层模式的必要性。我们的研究结果还强调了SAC对视网膜方向选择性的关键作用。
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引用次数: 0
A TOX-ic axis of epigenetic stem cell maintenance and chemoresistance in colon cancer. 癌症表观遗传干细胞维持和化疗耐药性的TOX-ic轴。
IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences Pub Date : 2023-09-15 eCollection Date: 2023-09-01 DOI: 10.1371/journal.pbio.3002295
Christopher G Hubert, Shaun R Stauffer, Justin D Lathia

Cancer stem cells drive tumor growth and survival via self-renewal and therapeutic resistance, but the upstream mechanisms are not well defined. In this issue of PLOS Biology, a study in colon cancer reveals a new signalling network that links epigenetic regulation to these phenotypes.

癌症干细胞通过自我更新和治疗耐药性驱动肿瘤生长和存活,但其上游机制尚不明确。在本期《公共科学图书馆生物学》杂志上,一项针对癌症的研究揭示了一种新的信号网络,它将表观遗传调控与这些表型联系起来。
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引用次数: 0
azyx-1 is a new gene that overlaps with zyxin and affects its translation in C. elegans, impacting muscular integrity and locomotion. azyx-1是一个与zyxin重叠的新基因,影响其在秀丽隐杆线虫中的翻译,影响肌肉的完整性和运动。
IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences Pub Date : 2023-09-15 eCollection Date: 2023-09-01 DOI: 10.1371/journal.pbio.3002300
Bhavesh S Parmar, Amanda Kieswetter, Ellen Geens, Elke Vandewyer, Christina Ludwig, Liesbet Temmerman

Overlapping genes are widely prevalent; however, their expression and consequences are poorly understood. Here, we describe and functionally characterize a novel zyx-1 overlapping gene, azyx-1, with distinct regulatory functions in Caenorhabditis elegans. We observed conservation of alternative open reading frames (ORFs) overlapping the 5' region of zyxin family members in several animal species, and find shared sites of azyx-1 and zyxin proteoform expression in C. elegans. In line with a standard ribosome scanning model, our results support cis regulation of zyx-1 long isoform(s) by upstream initiating azyx-1a. Moreover, we report on a rare observation of trans regulation of zyx-1 by azyx-1, with evidence of increased ZYX-1 upon azyx-1 overexpression. Our results suggest a dual role for azyx-1 in influencing zyx-1 proteoform heterogeneity and highlight its impact on C. elegans muscular integrity and locomotion.

重叠基因普遍存在;然而,人们对它们的表达和后果知之甚少。在这里,我们描述了一种新的zyx-1重叠基因azyx-1,并对其进行了功能表征,该基因在秀丽隐杆线虫中具有不同的调节功能。我们在几个动物物种中观察到了与zyxin家族成员5'区域重叠的选择性开放阅读框(ORF)的保守性,并在秀丽隐杆线虫中发现了azyx-1和zyxin蛋白形式表达的共享位点。与标准核糖体扫描模型一致,我们的结果支持通过上游启动azyx-1a对zyx-1长同种型的顺式调节。此外,我们报道了一个罕见的观察到的azyx-1对zyx-1的反式调节,有证据表明在azyx--1过表达时zyx-1增加。我们的研究结果表明,azyx-1在影响zyx-1蛋白型异质性方面具有双重作用,并强调了其对秀丽隐杆线虫肌肉完整性和运动的影响。
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引用次数: 0
A new polymodal gating model of the proton-activated chloride channel. 一种新的质子激活氯化物通道的多模式门控模型。
IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences Pub Date : 2023-09-15 eCollection Date: 2023-09-01 DOI: 10.1371/journal.pbio.3002309
Piao Zhao, Cheng Tang, Yuqin Yang, Zhen Xiao, Samantha Perez-Miller, Heng Zhang, Guoqing Luo, Hao Liu, Yaqi Li, Qingyi Liao, Fan Yang, Hao Dong, Rajesh Khanna, Zhonghua Liu
The proton-activated chloride (PAC) channel plays critical roles in ischemic neuron death, but its activation mechanisms remain elusive. Here, we interrogated PAC channel gating using its unique bidirectional modulator C77304 as a pharmacological probe. C77304 activated the PAC channel by acting on its proton gating, while simultaneously inhibiting channel activity at higher doses, through interaction with two modulatory sites with different affinities and state-dependence. Excitingly, we revealed that PAC undergoes intrinsic proton gating-independent voltage activation, which was defined by an ion-flux gating mechanism. Scanning-mutagenesis and molecular dynamics simulation confirmed that E181, E257, and E261 in human PAC form the primary proton sensors, as alanine mutations eliminated the channel’s proton gating while sparing the voltage-dependent gating. This proton sensing mechanism was basically conserved among orthologous PAC channels. Collectively, our data unveils the polymodal gating and proton sensing mechanisms in the PAC channel which may inspire potential drug development.
质子激活的氯化物(PAC)通道在缺血性神经元死亡中起着关键作用,但其激活机制尚不明确。在此,我们使用其新型双功能调制器C77304研究了PAC通道的门控。C77304作为PAC通道的弱激活剂,通过作用于其质子门控而引起适度激活。然而,在较高浓度下,C77304作为弱抑制剂,抑制通道活性。这种双重功能是通过与通道的2个调节位点相互作用来实现的,每个调节位点对通道的状态具有不同的亲和力和依赖性。此外,我们发现PAC通道的质子化无关电压激活似乎通过离子通量门控机制运行。通过扫描诱变和分子动力学模拟,我们证实人类PAC通道中的E181、E257和E261是主要的质子传感器,因为它们的丙氨酸突变消除了通道的质子门控,同时保留了电压依赖性门控。这种质子传感机制在来自不同物种的同源PAC通道中是保守的。总之,我们的数据揭示了PAC通道中的多模式门控和质子传感机制,这可能会激发潜在的药物开发。
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引用次数: 0
Transient eco-evolutionary dynamics early in a phage epidemic have strong and lasting impact on the long-term evolution of bacterial defences. 噬菌体流行早期的短暂生态进化动力学对细菌防御的长期进化有着强烈而持久的影响。
IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences Pub Date : 2023-09-15 eCollection Date: 2023-09-01 DOI: 10.1371/journal.pbio.3002122
Bridget Nora Janice Watson, Elizabeth Pursey, Sylvain Gandon, Edze Rients Westra

Organisms have evolved a range of constitutive (always active) and inducible (elicited by parasites) defence mechanisms, but we have limited understanding of what drives the evolution of these orthogonal defence strategies. Bacteria and their phages offer a tractable system to study this: Bacteria can acquire constitutive resistance by mutation of the phage receptor (surface mutation, sm) or induced resistance through their CRISPR-Cas adaptive immune system. Using a combination of theory and experiments, we demonstrate that the mechanism that establishes first has a strong advantage because it weakens selection for the alternative resistance mechanism. As a consequence, ecological factors that alter the relative frequencies at which the different resistances are acquired have a strong and lasting impact: High growth conditions promote the evolution of sm resistance by increasing the influx of receptor mutation events during the early stages of the epidemic, whereas a high infection risk during this stage of the epidemic promotes the evolution of CRISPR immunity, since it fuels the (infection-dependent) acquisition of CRISPR immunity. This work highlights the strong and lasting impact of the transient evolutionary dynamics during the early stages of an epidemic on the long-term evolution of constitutive and induced defences, which may be leveraged to manipulate phage resistance evolution in clinical and applied settings.

生物体已经进化出一系列组成型(始终活跃)和诱导型(由寄生虫引发)防御机制,但我们对这些正交防御策略的进化驱动因素了解有限。细菌及其噬菌体提供了一个易于处理的系统来研究这一点:细菌可以通过噬菌体受体的突变(表面突变,sm)获得组成型耐药性,或通过其CRISPR-Cas适应性免疫系统诱导耐药性。通过理论和实验的结合,我们证明了首先建立的机制具有强大的优势,因为它削弱了对替代阻力机制的选择。因此,改变获得不同抗性的相对频率的生态因素具有强烈而持久的影响:高生长条件通过增加流行病早期受体突变事件的流入来促进sm抗性的进化,而在疫情的这一阶段,高感染风险促进了CRISPR免疫的进化,因为它促进了CRISPR免疫的(感染依赖性)获得。这项工作强调了流行病早期阶段的短暂进化动力学对组成型和诱导型防御的长期进化的强烈而持久的影响,这可能被用来在临床和应用环境中操纵噬菌体耐药性的进化。
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