human

人类
  • 文章类型: Journal Article
    感觉运动系统可以在我们没有意识的情况下重新校准自己,一种过程学习,其计算机制仍未定义。关于内隐运动适应的最新发现,例如从小扰动和快速饱和中过度学习,以增加扰动大小,挑战现有的基于感觉错误的理论。我们认为感知错误,由运动相关线索的最优组合产生,是隐式自适应的主要驱动力。我们理论的核心是视觉线索的感官不确定性随着扰动的增加而增加,这通过知觉心理物理学(实验1)得到了验证。我们的理论在逐个试验的基础上预测了一系列扰动大小内隐适应的学习动态(实验2)。它解释了本体感受的变化及其与视觉扰动的关系(实验3)。通过调节扰动中的视觉不确定性,我们诱导了独特的适应响应,符合我们的模型预测(实验4)。总的来说,我们的感知误差框架优于现有的基于感知误差的模型,这表明在定位一个人的效应器时存在感知错误,由贝叶斯线索集成支持,支撑感觉运动系统的隐式适应。
    The sensorimotor system can recalibrate itself without our conscious awareness, a type of procedural learning whose computational mechanism remains undefined. Recent findings on implicit motor adaptation, such as over-learning from small perturbations and fast saturation for increasing perturbation size, challenge existing theories based on sensory errors. We argue that perceptual error, arising from the optimal combination of movement-related cues, is the primary driver of implicit adaptation. Central to our theory is the increasing sensory uncertainty of visual cues with increasing perturbations, which was validated through perceptual psychophysics (Experiment 1). Our theory predicts the learning dynamics of implicit adaptation across a spectrum of perturbation sizes on a trial-by-trial basis (Experiment 2). It explains proprioception changes and their relation to visual perturbation (Experiment 3). By modulating visual uncertainty in perturbation, we induced unique adaptation responses in line with our model predictions (Experiment 4). Overall, our perceptual error framework outperforms existing models based on sensory errors, suggesting that perceptual error in locating one\'s effector, supported by Bayesian cue integration, underpins the sensorimotor system\'s implicit adaptation.
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  • 文章类型: Journal Article
    感知生物运动(BM)对于人类生存和社会交往至关重要。许多研究报道了自闭症谱系障碍的BM感知受损,其特点是社会互动不足。患有注意力缺陷多动障碍(ADHD)的儿童通常在社交互动中表现出类似的困难。然而,很少有研究调查患有ADHD的儿童的BM感知。这里,我们比较了处理局部运动学和全局构型线索的能力差异,BM感知的两个基本能力,在典型的发展和多动症儿童之间。我们进一步调查了使用社会反应量表测量的BM感知和社交互动技能之间的关系,并检查了潜在因素的贡献(例如性别,年龄,注意,和智力)到BM感知。结果显示,患有ADHD的儿童表现出非典型的BM感知。局部和全局BM处理显示出明显的特征。本地BM处理能力与社交互动技能有关,而全球BM加工能力随着年龄的增长而显著提高。严重的,ADHD儿童的一般BM感知(即局部和全局BM处理)可能受到持续注意能力的影响。这种关系主要是由推理智力介导的。这些发现阐明了ADHD中非典型的BM感知以及与BM感知相关的潜在因素。此外,这项研究提供了新的证据,表明BM感知是社会认知的标志,并促进了我们对局部和全局处理在BM感知和社会认知障碍中的潜在作用的理解.
    Perceiving biological motion (BM) is crucial for human survival and social interaction. Many studies have reported impaired BM perception in autism spectrum disorder, which is characterised by deficits in social interaction. Children with attention deficit hyperactivity disorder (ADHD) often exhibit similar difficulties in social interaction. However, few studies have investigated BM perception in children with ADHD. Here, we compared differences in the ability to process local kinematic and global configurational cues, two fundamental abilities of BM perception, between typically developing and ADHD children. We further investigated the relationship between BM perception and social interaction skills measured using the Social Responsiveness Scale and examined the contributions of latent factors (e.g. sex, age, attention, and intelligence) to BM perception. The results revealed that children with ADHD exhibited atypical BM perception. Local and global BM processing showed distinct features. Local BM processing ability was related to social interaction skills, whereas global BM processing ability significantly improved with age. Critically, general BM perception (i.e. both local and global BM processing) may be affected by sustained attentional ability in children with ADHD. This relationship was primarily mediated by reasoning intelligence. These findings elucidate atypical BM perception in ADHD and the latent factors related to BM perception. Moreover, this study provides new evidence that BM perception is a hallmark of social cognition and advances our understanding of the potential roles of local and global processing in BM perception and social cognitive disorders.
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  • 文章类型: Journal Article
    目的:肠激素葡萄糖依赖性促胰岛素多肽(GIP)通过GIP受体(GIPR)发出信号,导致餐后增强葡萄糖刺激的胰岛素分泌。从啮齿动物研究到人类研究的结果的翻译已经受到GIPR靶向化合物的意外效果的挑战。我们,因此,研究了物种之间的变异,重点是GIPR脱敏和受体C末端的作用。
    方法:来自人类的GIPR,老鼠,老鼠,猪,在体外研究了狗和猫的同源配体亲和力,G蛋白激活(cAMP积累),β-抑制素的招募和内化。鼠标的变体,平行研究了具有交换的C末端尾巴的大鼠和人类GIPR。
    结果:人类GIPR比啮齿动物GIPR更容易内化。尽管激动剂对Gαs激活具有相似的亲和力和效力,尤其是,小鼠GIPR显示受体脱敏降低,内在化和β-排除素招募。使用酶稳定,长效GIP类似物,物种差异更加明显。\'换尾\'人类,大鼠和小鼠的GIPR在其Gαs偶联中均具有完全功能,和小鼠GIPR恢复内化和β-抑制素2招募特性与人的尾巴。当人GIPR自身的C末端被大鼠或小鼠尾巴取代时,其丧失募集β-抑制蛋白2的能力。
    结论:人GIPR的脱敏作用依赖于C末端尾部。C端尾部的物种依赖性功能和不同的物种依赖性内化模式,特别是在人类和小鼠的GIPR之间,是影响GIPR靶向治疗化合物临床前评价的重要因素。
    OBJECTIVE: The gut hormone glucose-dependent insulinotropic polypeptide (GIP) signals via the GIP receptor (GIPR), resulting in postprandial potentiation of glucose-stimulated insulin secretion. The translation of results from rodent studies to human studies has been challenged by the unexpected effects of GIPR-targeting compounds. We, therefore, investigated the variation between species, focusing on GIPR desensitization and the role of the receptor C-terminus.
    METHODS: The GIPR from humans, mice, rats, pigs, dogs and cats was studied in vitro for cognate ligand affinity, G protein activation (cAMP accumulation), recruitment of beta-arrestin and internalization. Variants of the mouse, rat and human GIPRs with swapped C-terminal tails were studied in parallel.
    RESULTS: The human GIPR is more prone to internalization than rodent GIPRs. Despite similar agonist affinities and potencies for Gαs activation, especially, the mouse GIPR shows reduced receptor desensitization, internalization and beta-arrestin recruitment. Using an enzyme-stabilized, long-acting GIP analogue, the species differences were even more pronounced. \'Tail-swapped\' human, rat and mouse GIPRs were all fully functional in their Gαs coupling, and the mouse GIPR regained internalization and beta-arrestin 2 recruitment properties with the human tail. The human GIPR lost the ability to recruit beta-arrestin 2 when its own C-terminus was replaced by the rat or mouse tail.
    CONCLUSIONS: Desensitization of the human GIPR is dependent on the C-terminal tail. The species-dependent functionality of the C-terminal tail and the different species-dependent internalization patterns, especially between human and mouse GIPRs, are important factors influencing the preclinical evaluation of GIPR-targeting therapeutic compounds.
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  • 文章类型: Journal Article
    分泌的趋化因子在靶组织中形成浓度梯度,以控制免疫细胞响应炎症刺激的迁移方向和模式;然而,梯度是如何形成的还有很多争议。硫酸乙酰肝素(HS)与趋化因子结合并调节其活性。在这项研究中,我们研究了HS在已知与HS结合的CCL5的梯度形成和化学引诱物活性中的作用。CCL5与肝素进行液-液相分离,形成梯度,使用固定在肝素珠上的CCL5证实了这一点。通过Transwell测定,在CHO-K1(野生型)和CHO-677(缺乏HS)细胞中建立了HS在CCL5梯度形成中的生物学意义。人外周血细胞的Transwell测定进一步证明了HS对CCL5化学引诱物活性的影响。最后,通过突变CCL5(缺乏肝素结合序列)或通过向野生型CCL5添加肝素,向小鼠腹膜注射趋化因子显示炎性细胞募集减少。我们的实验数据表明,CCL5与HS的共相分离建立了特定的趋化因子浓度梯度以触发定向细胞迁移。结果值得对其他肝素结合趋化因子进行进一步研究,并可以更详细地了解疾病过程和新的治疗策略。
    Secreted chemokines form concentration gradients in target tissues to control migratory directions and patterns of immune cells in response to inflammatory stimulation; however, how the gradients are formed is much debated. Heparan sulfate (HS) binds to chemokines and modulates their activities. In this study, we investigated the roles of HS in the gradient formation and chemoattractant activity of CCL5 that is known to bind to HS. CCL5 and heparin underwent liquid-liquid phase separation and formed gradient, which was confirmed using CCL5 immobilized on heparin-beads. The biological implication of HS in CCL5 gradient formation was established in CHO-K1 (wild-type) and CHO-677 (lacking HS) cells by Transwell assay. The effect of HS on CCL5 chemoattractant activity was further proved by Transwell assay of human peripheral blood cells. Finally, peritoneal injection of the chemokines into mice showed reduced recruitment of inflammatory cells either by mutant CCL5 (lacking heparin-binding sequence) or by addition of heparin to wild-type CCL5. Our experimental data propose that co-phase separation of CCL5 with HS establishes a specific chemokine concentration gradient to trigger directional cell migration. The results warrant further investigation on other heparin-binding chemokines and allows for a more elaborate insight into disease process and new treatment strategies.
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  • 文章类型: Journal Article
    几十年来一直观察到对免疫器官的直接神经输入,它们在神经免疫调节中的功能日益受到重视。然而,这种神经结构的现有知识,特别是灵长类动物的免疫器官,仍然不完整。在这项研究中,我们全面评估了自主神经的3D解剖学(即,交感神经和副交感神经)首次在恒河猴和人类的免疫器官中进行神经支配。借助先进的全组织免疫标记和光片荧光成像技术,我们揭示了成年猴子和人类脾脏实质中密集组织的交感神经结构。另一方面,只有稀疏,如果有的话,在淋巴结内观察到交感神经输入,Peyer的补丁,或者胸腺.相比之下,在这些被检查的免疫器官的实质中存在最小的副交感神经支配。一起,这项工作记录了非人灵长类动物和人类不同免疫器官自主神经支配的独特模式,作为该领域未来神经免疫调节研究的重要参考。
    Direct neural inputs to immune organs have been observed for decades, with their functions in neuroimmune regulation being increasingly appreciated. However, the current knowledge of such neural structures, particularly those in primate immune organs, remains incomplete. In this study, we comprehensively assessed the 3D anatomy of autonomic (i.e., sympathetic and parasympathetic) innervations in the immune organs of the rhesus macaque monkey and the human for the first time. Aided with the advanced technique of whole-tissue immunolabeling and lightsheet fluorescence imaging, we revealed the densely organized sympathetic architecture in the parenchyma of the adult monkey and human spleens. On the other hand, only sparse, if any, sympathetic inputs were observed inside the lymph nodes, Peyer\'s patches, or thymus. In contrast, there were minimal parasympathetic innervations in the parenchyma of these examined immune organs. Together, this work has documented the unique patterns of autonomic innervations in different immune organs of a non-human primate and the human, serving as an essential reference for future research on neuroimmune regulation in the field.
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  • 文章类型: Journal Article
    大脑结构电路形成了丰富模式的功能同步,支持复杂的认知和行为能力。然而,结构连接体(SC)和功能连接体(FC)的偶联如何发展及其与认知功能和转录组结构的关系仍不清楚.我们使用来自439名年龄在5.7-21.9岁的参与者的多模态磁共振成像数据,通过结合皮质内和皮质外结构连通性来预测功能连通性。表征SC-FC耦合。我们的发现表明,SC-FC耦合在视觉和躯体运动网络中最强,与进化扩张一致,髓鞘含量,和功能主梯度。随着发展的进步,SC-FC偶联表现出由皮质区域增加主导的异质性改变,广泛分布在整个躯体运动中,额顶叶,背侧注意力,和默认模式网络。此外,我们发现SC-FC耦合显着预测一般智力的个体变异性,主要影响额叶和默认模式网络。最后,我们的结果表明,SC-FC偶联的异质性发育与少突胶质细胞相关通路中的基因呈正相关,与星形胶质细胞相关基因呈负相关.这项研究提供了对典型发展中SC-FC耦合的成熟原理的见解。
    Brain structural circuitry shapes a richly patterned functional synchronization, supporting for complex cognitive and behavioural abilities. However, how coupling of structural connectome (SC) and functional connectome (FC) develops and its relationships with cognitive functions and transcriptomic architecture remain unclear. We used multimodal magnetic resonance imaging data from 439 participants aged 5.7-21.9 years to predict functional connectivity by incorporating intracortical and extracortical structural connectivity, characterizing SC-FC coupling. Our findings revealed that SC-FC coupling was strongest in the visual and somatomotor networks, consistent with evolutionary expansion, myelin content, and functional principal gradient. As development progressed, SC-FC coupling exhibited heterogeneous alterations dominated by an increase in cortical regions, broadly distributed across the somatomotor, frontoparietal, dorsal attention, and default mode networks. Moreover, we discovered that SC-FC coupling significantly predicted individual variability in general intelligence, mainly influencing frontoparietal and default mode networks. Finally, our results demonstrated that the heterogeneous development of SC-FC coupling is positively associated with genes in oligodendrocyte-related pathways and negatively associated with astrocyte-related genes. This study offers insight into the maturational principles of SC-FC coupling in typical development.
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  • 文章类型: Journal Article
    能量在生物过程中起着至关重要的作用。为了评估大量人群的能量代谢状况,本研究提出了使用全室热量计测量能量消耗测量的标准操作程序。该协议说明了验证甲醇燃烧和评估志愿者代谢状态的程序和具体细节。在代谢状态评估中,(1)O2消耗,(2)二氧化碳生产,(3)能量消耗,和(4)呼吸交换比首先在休息时测量,并在人类表型图谱中作为基本表型项目提供。此外,它包括测量运动相关活动产热和评估环境温度对能量代谢影响的程序和结果。这些结果证明了全室热量计的更广泛的实用性。该方案的实施有望增强人类表型Atla的数据可比性,为代谢相关研究提供有价值的参考。
    Energy plays a vital role in biological processes. To assess energy metabolism status in a large population cohort, the standard operating procedure for measuring energy expenditure measurement using a whole-room calorimeter was purposed in this study. This protocol illustrates the procedure and specific details for validating methanol burning and evaluating the metabolic status of volunteers. In metabolic status evaluation, the (1) O2 consumption, (2) CO2 production, (3) energy expenditure, and (4) respiratory exchange ratio were first measured at resting and provided as basic phenotype items in Human Phenotype Atlas. Besides, it includes the procedure and results for measuring exercise-related activity thermogenesis and evaluating the impact of environmental temperature on energy metabolism. These results demonstrate the broader utility of the whole-room calorimeter. The implementation of this protocol is expected to enhance the data comparability in Human Phenotype Atla and provide a valuable reference for metabolism-related studies.
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  • 文章类型: Journal Article
    人们在日常社交中形成对他人的印象,并从他人的行为中推断出人格特质。这种特质推断被认为依赖于两个普遍的维度:能力和温暖。这两个维度可用于构建“社会认知图”,以有效地组织从社会相遇中获得的大量信息。源于空间认知,支持空间认知图表示和导航的神经编码得到了广泛的研究。最近的研究表明,类似的神经机制也适用于社会认知中的地图状架构。在这里,我们研究了空间代码如何在物理环境之外运行,并支持社会认知地图的表示和导航。我们设计了一个由能力和温暖两个维度定义的社会价值空间。行为上,参与者能够从这个抽象的社交空间中的随机起始位置导航到学习的位置。在神经层面,我们确定了前肌距离的表示,梭状回,和枕骨中回.我们还在内侧前额叶皮层和内嗅皮层中发现了网格状表示模式的部分证据。此外,网格状反应的强度随着在社交空间中导航的表现和社交回避特征得分而缩放。我们的发现表明了一种神经认知机制,通过这种机制,社会信息可以被组织成一个结构化的表示,即认知地图及其与社会福祉的相关性。
    People form impressions about others during daily social encounters and infer personality traits from others\' behaviors. Such trait inference is thought to rely on two universal dimensions: competence and warmth. These two dimensions can be used to construct a \'social cognitive map\' organizing massive information obtained from social encounters efficiently. Originating from spatial cognition, the neural codes supporting the representation and navigation of spatial cognitive maps have been widely studied. Recent studies suggest similar neural mechanism subserves the map-like architecture in social cognition as well. Here we investigated how spatial codes operate beyond the physical environment and support the representation and navigation of social cognitive map. We designed a social value space defined by two dimensions of competence and warmth. Behaviorally, participants were able to navigate to a learned location from random starting locations in this abstract social space. At the neural level, we identified the representation of distance in the precuneus, fusiform gyrus, and middle occipital gyrus. We also found partial evidence of grid-like representation patterns in the medial prefrontal cortex and entorhinal cortex. Moreover, the intensity of grid-like response scaled with the performance of navigating in social space and social avoidance trait scores. Our findings suggest a neurocognitive mechanism by which social information can be organized into a structured representation, namely cognitive map and its relevance to social well-being.
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  • 文章类型: Journal Article
    与低地移民相比,尽管潜在的机制尚不清楚,但藏族在高海拔地区的生殖成功率更高。这里,我们比较了藏族和汉族移民足月胎盘的转录组和组织学。我们发现胎盘滋养细胞在藏族和汉族之间表现出最大的表达差异,和藏族人表现出降低的免疫反应和内质网应激。值得注意的是,我们发现了性别偏见的表达差异,其中男婴胎盘比女婴胎盘显示出更大的人口差异。脐带在性别偏倚表达差异中起关键作用,这与藏族男性新生儿出生体重较高有关。我们还确定了藏族男婴胎盘的适应性组织学变化,包括较大的脐动脉壁和脐动脉内膜和中膜,合胞节较少。这些发现为人类群体的性别偏见适应提供了有价值的见解,对人类生殖的医学和遗传研究具有重要意义。
    Compared with lowlander migrants, native Tibetans have a higher reproductive success at high altitude though the underlying mechanism remains unclear. Here, we compared the transcriptome and histology of full-term placentas between native Tibetans and Han migrants. We found that the placental trophoblast shows the largest expression divergence between Tibetans and Han, and Tibetans show decreased immune response and endoplasmic reticulum stress. Remarkably, we detected a sex-biased expression divergence, where the male-infant placentas show a greater between-population difference than the female-infant placentas. The umbilical cord plays a key role in the sex-biased expression divergence, which is associated with the higher birth weight of the male newborns of Tibetans. We also identified adaptive histological changes in the male-infant placentas of Tibetans, including larger umbilical artery wall and umbilical artery intima and media, and fewer syncytial knots. These findings provide valuable insights into the sex-biased adaptation of human populations, with significant implications for medical and genetic studies of human reproduction.
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  • 文章类型: Journal Article
    费城染色体阳性(Ph)白血病是一种致命的血液恶性肿瘤。尽管使用酪氨酸激酶抑制剂(TKIs)的标准治疗在延长患者生存期方面取得了显著成功,不容忍,复发,对于Ph+白血病患者,TKI耐药仍然是严重的问题。这里,我们报道了一个新的白血病发生过程,其中RAPSYN和BCR-ABL共同出现在Ph+白血病中,和RAPSKYN介导BCR-ABL的neddylation。因此,NeddylatedBCR-ABL通过竞争其c-CBL介导的降解来增强稳定性。此外,SRC磷酸化RAPSYN以激活其NEDD8E3连接酶活性,促进BCR-ABL稳定和疾病进展。此外,与基于PROTAC的降解剂的体内无效相反,RAPPYN表达的缺失,或其连接酶活性降低BCR-ABL稳定性,反过来,抑制肿瘤的形成和生长。总的来说,这些发现代表了癌蛋白和白血病细胞的酪氨酸激酶活性的替代方法,并为靶向RAPSYN介导的BCR-ABLneddylation治疗Ph+白血病提供了理论基础.
    慢性粒细胞白血病(简称CML)约占美国成年人诊断的所有血癌的15%。该病症的特征在于不成熟免疫细胞的过度产生,其干扰适当的血液功能。它与基因重组(一种突变)有关,该基因重组导致白细胞产生异常的“BCR-ABL”酶,该酶始终处于打开状态。反过来,这种过度活跃的蛋白质会导致细胞活得更长,分裂不受控制。目前可用于控制疾病的一些最有效的药物通过阻断BCR-ABL的活性起作用。然而,随着时间的推移,某些患者可能会对这些治疗产生抗药性,导致他们复发。因此,需要其他方法来控制这种疾病;特别是,一个有希望的研究途径在于探索是否有可能减少患病细胞中存在的酶的量。作为这项努力的一部分,赵,戴,Li,张等人。专注于RAPPYN,CML细胞中以前未知的支架蛋白。在其他组织中,它最近被证明参与neddylation-一种过程,蛋白质接受某些化学“标签”,从而改变它们的行为方式。实验表明,与健康志愿者相比,RAPSYN在CML患者的白细胞中以高得多的水平存在。通过实验降低CML细胞中RAPSYN的含量导致这些细胞的分裂速度降低-无论是在培养皿中还是在小鼠体内注射时,同时也与BCR-ABL水平降低有关。其他生化实验表明,RAPSYN坚持与BCR-ABL添加化学“标签”,保护异常蛋白质免受降解,提高其总体水平。最后,团队展示了SRC,一种在新出现的癌症中经常失调的酶,可以激活RAPSYN进行Neddylation的能力;这种机制可以促进BCR-ABL稳定,反过来,疾病进展。一起来看,这些实验表明了一种控制BCR-ABL水平的新方法。未来的研究应该调查RAPSYN是否也能稳定白血病对现有药物耐药的患者的BCR-ABL。最终,RAPSYN可能为克服CML患者的耐药性提供新的靶点。
    Philadelphia chromosome-positive (Ph+) leukemia is a fatal hematological malignancy. Although standard treatments with tyrosine kinase inhibitors (TKIs) have achieved remarkable success in prolonging patient survival, intolerance, relapse, and TKI resistance remain serious issues for patients with Ph+ leukemia. Here, we report a new leukemogenic process in which RAPSYN and BCR-ABL co-occur in Ph+ leukemia, and RAPSYN mediates the neddylation of BCR-ABL. Consequently, neddylated BCR-ABL enhances the stability by competing its c-CBL-mediated degradation. Furthermore, SRC phosphorylates RAPSYN to activate its NEDD8 E3 ligase activity, promoting BCR-ABL stabilization and disease progression. Moreover, in contrast to in vivo ineffectiveness of PROTAC-based degraders, depletion of RAPSYN expression, or its ligase activity decreased BCR-ABL stability and, in turn, inhibited tumor formation and growth. Collectively, these findings represent an alternative to tyrosine kinase activity for the oncoprotein and leukemogenic cells and generate a rationale of targeting RAPSYN-mediated BCR-ABL neddylation for the treatment of Ph+ leukemia.
    Chronic myeloid leukemia (CML for short) accounts for about 15% of all blood cancers diagnosed in adults in the United States. The condition is characterized by the overproduction of immature immune cells that interfere with proper blood function. It is linked to a gene recombination (a type of mutation) that leads to white blood cells producing an abnormal ‘BCR-ABL’ enzyme which is always switched on. In turn, this overactive protein causes the cells to live longer and divide uncontrollably. Some of the most effective drugs available to control the disease today work by blocking the activity of BCR-ABL. Yet certain patients can become resistant to these treatments over time, causing them to relapse. Other approaches are therefore needed to manage this disease; in particular, a promising avenue of research consists in exploring whether it is possible to reduce the amount of the enzyme present in diseased cells. As part of this effort, Zhao, Dai, Li, Zhang et al. focused on RAPSYN, a scaffolding protein previously unknown in CML cells. In other tissues, it has recently been shown to participate in neddylation – a process by which proteins receive certain chemical ‘tags’ that change the way they behave. The experiments revealed that, compared to healthy volunteers, RAPSYN was present at much higher levels in the white blood cells of CML patients. Experimentally lowering the amount of RAPSYN in CML cells led these to divide less quickly – both in a dish and when injected in mice, while also being linked to decreased levels of BCR-ABL. Additional biochemical experiments indicated that RAPSYN sticks with BCR-ABL to add chemical ‘tags’ that protect the abnormal protein against degradation, therefore increasing its overall levels. Finally, the team showed that SRC, an enzyme often dysregulated in emerging cancers, can activate RAPSYN’s ability to conduct neddylation; such mechanism could promote BCR-ABL stabilization and, in turn, disease progression. Taken together, these experiments indicate a new way by which BCR-ABL levels are controlled. Future studies should investigate whether RAPSYN also stabilizes BCR-ABL in patients whose leukemias have become resistant to existing drugs. Eventually, RAPSYN may offer a new target for overcoming drug-resistance in CML patients.
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