【標(biāo)題速讀】【Sciadv】【2022年】【6月】

聲明:本專欄主要對生命科學(xué)領(lǐng)域的一些期刊文章標(biāo)題進(jìn)行翻譯,所有內(nèi)容均由本人手工整理翻譯。由于本人專業(yè)為生物分析相關(guān),其他領(lǐng)域如果出現(xiàn)翻譯錯誤請諒解。

已滅絕的巨齒鯊可能是古代海洋世界中最主要的頂級掠食者之一。 卡斯特等人研究了巨牙的飲食,發(fā)現(xiàn)它在海洋食物網(wǎng)中的地位高于任何其他已知的海洋物種,無論是已滅絕的還是現(xiàn)存的。 該小組根據(jù)牙齒化石中的氮同種型比率重建了鯊魚的飲食。 確定巨齒鯊在古代海洋食物網(wǎng)中的位置對于了解它們的進(jìn)化和滅絕至關(guān)重要。

蜂群細(xì)菌細(xì)胞的重疊軌跡。 細(xì)菌群可以以多種方式組織,包括蜂群和密集的靜止生物膜。 這些不同狀態(tài)之間的轉(zhuǎn)變體現(xiàn)了細(xì)菌如何適應(yīng)具有挑戰(zhàn)性的環(huán)境。 沃利策等人在個人和集體規(guī)模上研究了蜂群到生物膜的轉(zhuǎn)變。 細(xì)菌動力學(xué)分析表明,一些單個細(xì)胞通過將更多細(xì)菌捕獲在靜止簇內(nèi)來開始形成生物膜。生物和物理過程都促進(jìn)了從蜂群到生物膜的轉(zhuǎn)變,這是對生物膜形成的關(guān)鍵洞察。

金表面上微管的藝術(shù)渲染圖。 由于分辨率有限,使用傳統(tǒng)的超分辨率顯微鏡捕獲三維細(xì)胞結(jié)構(gòu)具有挑戰(zhàn)性。 蒂勒等人通過結(jié)合超分辨率顯微鏡和金屬誘導(dǎo)的能量轉(zhuǎn)移來解決這個問題。 這種方法允許對亞細(xì)胞結(jié)構(gòu)進(jìn)行納米級成像以及同時對兩種不同結(jié)構(gòu)進(jìn)行成像。

一個剛性的3D 打印“島”位于可拉伸聚合物的頂部。目前,重復(fù)和過度的應(yīng)變會導(dǎo)致可拉伸電子設(shè)備失效,從而限制了它們的實際應(yīng)用。 為了解決這個問題,Yang 等人開發(fā)了摩天輪狀島嶼 (FWI),可以承受連續(xù)拉伸、扭曲、戳和壓皺的壓力。 與軟聚合物基質(zhì)中的傳統(tǒng)圓形和方形島不同,幾何設(shè)計的 FWI 非常耐用。 Yang 等人的方法適用于各種可拉伸電子產(chǎn)品,并可能在不久的將來加速商業(yè)化。
1.Reducing opioid use disorder and overdose deaths in the United States: A dynamic modeling analysis.
減少美國的阿片類藥物使用障礙和過量死亡:動態(tài)建模分析.
2.Disentangling the evolutionary drivers of social complexity: A comprehensive test of hypotheses.
分解社會復(fù)雜性的進(jìn)化驅(qū)動因素:對假設(shè)的全面測試.
3.The promise and pitfalls of cross-partisan conversations for reducing affective polarization: Evidence from randomized experiments.
跨黨派對話對減少情感極化的承諾和陷阱:來自隨機實驗的證據(jù).
4.Subcritical escape waves in schooling fish.
學(xué)群魚中的亞臨界逃逸波。
5.There is chemistry in social chemistry.
社會化學(xué)中存在著化學(xué)成分。
6.Cortical-subcortical structural connections support transcranial magnetic stimulation engagement of the amygdala.
皮質(zhì)-皮質(zhì)下的結(jié)構(gòu)聯(lián)系支持經(jīng)顱磁刺激對杏仁核的參與。
7.The evolutionary origins of syntax: Event cognition in nonhuman primates.
語法的進(jìn)化起源:?非人類靈長類動物的事件認(rèn)知。
8.Greenhouse gas emissions from African lakes are no longer a blind spot.
非洲湖泊的溫室氣體排放不再是一個盲點。
9.Cenozoic megatooth sharks occupied extremely high trophic positions.
新生代巨齒鯊占據(jù)了極高的營養(yǎng)位置。
10.Chimpanzees (Pan troglodytes) navigate to find hidden fruit in a virtual environment.
黑猩猩(Pan troglodytes)在虛擬環(huán)境中導(dǎo)航尋找隱藏的水果。
11.A unique stone skipping–like trajectory of asteroid Aletai.
小行星Aletai的獨特跳石式軌跡。
12.Early diagenetic control on the enrichment and fractionation of rare earth elements in deep-sea sediments.
深海沉積物中稀土元素的富集和分化的早期成因控制。
13.A river ran through it: Floodplains as America’s newest relict landform.
一條河流穿過它:?洪泛區(qū)是美國最新的遺跡地貌。
14.Non–von Neumann multi-input spike signal processing enabled by an artificial synaptic multiplexer.
人工突觸復(fù)用器實現(xiàn)的非馮-諾依曼多輸入尖峰信號處理。
15.Local lateral contact governs shear traction of micropatterned surfaces on hydrogel substrates.
局部橫向接觸控制水凝膠基底上微圖案表面的剪切牽引力。
16.Palimpsest memories stored in memristive synapses.
儲存在記憶性突觸中的古板記憶。
17.The molecular impact of life in an indoor environment.
室內(nèi)環(huán)境中生活的分子影響.
18.Untethered small-scale magnetic soft robot with programmable magnetization and integrated multifunctional modules.
具有可編程磁化和集成多功能模塊的無拴小尺寸磁性軟體機器人。
19.Flexible bioelectronic device fabricated by conductive polymer–based living material.
以導(dǎo)電聚合物為基礎(chǔ)的活體材料制造的柔性生物電子裝置。
20.Metal-free ferroelectric halide perovskite exhibits visible photoluminescence correlated with local ferroelectricity.
無金屬鐵電鹵化物過氧化物表現(xiàn)出與局部鐵電性相關(guān)的可見光發(fā)光。
21.Dealumination of small-pore zeolites through pore-opening migration process with the aid of pore-filler stabilization.
借助于孔隙填充物穩(wěn)定化,通過孔隙開放遷移過程實現(xiàn)小孔沸石的脫膠。
22.Kinetic diffusion–controlled synthesis of twinned intermetallic nanocrystals for CO-resistant catalysis.
用于耐CO催化的雙金屬間納米晶體的動力學(xué)擴(kuò)散控制合成。
23.Locally controllable magnetic soft actuators with reprogrammable contraction-derived motions.
局部可控的磁性軟執(zhí)行器,具有可重新編程的收縮運動。
24.Bubble energy generator.
氣泡能量發(fā)生器。
25.Optical suppression of energy barriers in single molecule-metal binding.
單分子金屬結(jié)合中能量障礙的光學(xué)抑制。
26.Laser-scribed conductive, photoactive transition metal oxide on soft elastomers for Janus on-skin electronics and soft actuators.
在軟質(zhì)彈性體上激光刻制導(dǎo)電性、光活性過渡金屬氧化物,用于Janus皮膚上的電子和軟驅(qū)動器。
27.Therapeutic inhibition of the SRC-kinase HCK facilitates T cell tumor infiltration and improves response to immunotherapy.
SRC-激酶HCK的治療性抑制促進(jìn)T細(xì)胞腫瘤浸潤并改善對免疫療法的反應(yīng)。
28.Human gingival mesenchymal stem cells retain their growth and immunomodulatory characteristics independent of donor age.
人類牙齦間質(zhì)干細(xì)胞保持其生長和免疫調(diào)節(jié)特性,與供體年齡無關(guān)。
29.Human organ rejuvenation by VEGF-A: Lessons from the skin.
血管內(nèi)皮生長因子-A使人體器官恢復(fù)活力:來自皮膚的教訓(xùn)。
30.Phased small RNA–mediated systemic signaling in plants.
植物中分階段小RNA介導(dǎo)的系統(tǒng)信號傳遞。
31.Temozolomide-induced guanine mutations create exploitable vulnerabilities of guanine-rich DNA and RNA regions in drug-resistant gliomas.
替莫唑胺誘導(dǎo)的鳥嘌呤突變在耐藥膠質(zhì)瘤中創(chuàng)造了富含鳥嘌呤的DNA和RNA區(qū)域的可利用漏洞。
32.Phase separation of HRLP regulates flowering time in Arabidopsis.
HRLP的相分離調(diào)控擬南芥的開花時間。
33.Liver cancer heterogeneity modeled by in situ genome editing of hepatocytes.
通過肝細(xì)胞原位基因組編輯模擬肝癌的異質(zhì)性。
34.Inhaled siRNA nanoparticles targeting IL11 inhibit lung fibrosis and improve pulmonary function post-bleomycin challenge.
靶向IL11的吸入式siRNA納米顆粒抑制肺纖維化并改善博洛霉素挑戰(zhàn)后的肺功能。
35.Mitonuclear genotype remodels the metabolic and microenvironmental landscape of Hürthle cell carcinoma.
有絲核基因型重塑了Hürthle細(xì)胞癌的代謝和微環(huán)境景觀。
36.S-Adenosylmethionine–responsive cystathionine β-synthase modulates sulfur metabolism and redox balance in Mycobacterium tuberculosis.
S-腺苷蛋氨酸反應(yīng)性胱硫醚β合成酶調(diào)節(jié)結(jié)核分枝桿菌的硫代謝和氧化還原平衡。
37.Translational regulation of TFH cell differentiation and autoimmune pathogenesis.
TFH細(xì)胞分化和自身免疫發(fā)病機制的轉(zhuǎn)化調(diào)節(jié)。
38.Orally efficacious lead of the AVG inhibitor series targeting a dynamic interface in the respiratory syncytial virus polymerase.
以呼吸道合胞病毒聚合酶的動態(tài)界面為目標(biāo)的AVG系列抑制劑的口服效力線索。
39.SNARE assembly enlightened by cryo-EM structures of a synaptobrevin–Munc18-1–syntaxin-1 complex.
突觸蛋白-Munc18-1-Syntaxin-1復(fù)合物的低溫EM結(jié)構(gòu)對SNARE組裝的啟示。
40.Characterization of the membrane interactions of phospholipase Cγ reveals key features of the active enzyme.
磷脂酶Cγ的膜相互作用的特征揭示了活性酶的關(guān)鍵特征。
41.BACE-1 inhibition facilitates the transition from homeostatic microglia to DAM-1.
BACE-1的抑制促進(jìn)了小膠質(zhì)細(xì)胞從平衡狀態(tài)向DAM-1的過渡。
42.Neuroligin-3 confines AMPA receptors into nanoclusters, thereby controlling synaptic strength at the calyx of Held synapses.
Neuroligin-3將AMPA受體限制在納米簇中,從而控制Held突觸的萼片處的突觸強度。
43.Projections of future forest degradation and CO2 emissions for the Brazilian Amazon.
對巴西亞馬遜地區(qū)未來森林退化和二氧化碳排放的預(yù)測。
44.Human impacts as the main driver of tropical forest carbon.
人類的影響是熱帶森林碳的主要驅(qū)動力。
45.Volatility in coral cover erodes niche structure, but not diversity, in reef fish assemblages.
珊瑚覆蓋率的波動侵蝕了珊瑚魚組合的生態(tài)位結(jié)構(gòu),但不是多樣性。
46.Discovery of distinct lithosphere-asthenosphere boundary and the Gutenberg discontinuity in the Atlantic Ocean.
在大西洋發(fā)現(xiàn)獨特的巖石圈-大氣圈邊界和古登堡不連續(xù)現(xiàn)象。
47.Charon’s refractory factory.
夏龍的耐火材料工廠。
48.Observing separate spin and charge Fermi seas in a strongly correlated one-dimensional conductor.
在強相關(guān)的一維導(dǎo)體中觀察到獨立的自旋和電荷費米海。
49.Autonomous push button–controlled rapid insulin release from a piezoelectrically activated subcutaneous cell implant.
壓電激活的皮下細(xì)胞植入物的自主按鈕控制的快速胰島素釋放。
50.Polyoxocationic antimony oxide cluster with acidic protons.
帶有酸性質(zhì)子的多氧氧化銻簇。
51.Sequential compound fusion and kiss-and-run mediate exo- and endocytosis in excitable cells.
順序的化合物融合和親吻跑動介導(dǎo)了興奮性細(xì)胞中的外吞和內(nèi)吞。
52.Metal ion–regulated assembly of designed modular protein cages.
金屬離子調(diào)控設(shè)計的模塊化蛋白籠的組裝。
53.High-speed acoustic holography with arbitrary scattering objects.
具有任意散射對象的高速聲全息技術(shù)。
54.All-optical graph representation learning using integrated diffractive photonic computing units.
使用集成衍射光子計算單元的全光圖形表示學(xué)習(xí)。
55.Concealable physically unclonable function chip with a memristor array.
帶有記憶體陣列的可隱藏的物理不可克隆的功能芯片。
56.Universal optothermal micro/nanoscale rotors.
通用光熱微/納米級旋轉(zhuǎn)器。
57.Polarization-selective reconfigurability in hybridized-active-dielectric nanowires.
混合活性電介質(zhì)納米線中的偏振選擇可重構(gòu)性。
58.Ultrafast charge transfer coupled to quantum proton motion at molecule/metal oxide interface.
分子/金屬氧化物界面的超快電荷轉(zhuǎn)移與量子運動的耦合。
59.Conjugated microporous polymer membranes for light-gated ion transport.
用于光門離子傳輸?shù)墓曹椢⒖拙酆衔锬ぁ?/p>
60.Wide-range robust wireless power transfer using heterogeneously coupled and flippable neutrals in parity-time symmetry.
利用異質(zhì)耦合和可翻轉(zhuǎn)的中性體在奇偶性時間對稱性中進(jìn)行大范圍的穩(wěn)健無線功率傳輸。
61.Setting of the magnetic structure of chiral kagome antiferromagnets by a seeded spin-orbit torque.
通過種子自旋-軌道力矩設(shè)置手性卡格米反鐵磁體的磁結(jié)構(gòu)。
62.Enantiosensitive steering of free-induction decay.
自由誘導(dǎo)衰變的對映敏感轉(zhuǎn)向。
63.Depletion of oocyte dynamin-related protein 1 shows maternal-effect abnormalities in embryonic development.
卵母細(xì)胞Dynamin相關(guān)蛋白1的耗竭顯示了胚胎發(fā)育的母體效應(yīng)異常。
64.The phagocytic cyst cells in Drosophila testis eliminate germ cell progenitors via phagoptosis.
果蠅睪丸中的吞噬囊細(xì)胞通過吞噬作用消除生殖細(xì)胞原基。
65.Tet2 coordinates with Foxo1 and Runx1 to balance T follicular helper cell and T helper 1 cell differentiation.
Tet2與Foxo1和Runx1協(xié)調(diào),平衡T濾泡輔助細(xì)胞和T輔助1細(xì)胞的分化。
66.Boundary domain genes were recruited to suppress bract growth and promote branching in maize.
邊界域基因被招募來抑制玉米的苞葉生長和促進(jìn)分枝。
67.GPR15L is an epithelial inflammation-derived pruritogen.
GPR15L是一種上皮細(xì)胞炎癥衍生的瘙癢原。
68.Semicircular canal size constrains vestibular function in miniaturized frogs.
半規(guī)管的大小制約了小型化青蛙的前庭功能。
69.A long noncoding RNA promotes parasite differentiation in African trypanosomes.
一種長非編碼RNA促進(jìn)非洲錐蟲的寄生蟲分化。
70.Female reproductive life span is extended by targeted removal of fibrotic collagen from the mouse ovary.
通過有針對性地去除小鼠卵巢的纖維化膠原,延長了女性的生殖壽命。
71.HYPK promotes the activity of the Nα-acetyltransferase A complex to determine proteostasis of nonAc-X2/N-degron–containing proteins.
HYPK促進(jìn)Nα-乙酰轉(zhuǎn)移酶A復(fù)合物的活性,以決定非Ac-X2/N-egron含蛋白的蛋白穩(wěn)態(tài)。
72.Development of a physiological insulin resistance model in human stem cell–derived adipocytes.
人類干細(xì)胞衍生的脂肪細(xì)胞的生理性胰島素抵抗模型的開發(fā)。
73.Steroid nuclear receptor coactivator 2 controls immune tolerance by promoting induced Treg differentiation via up-regulating Nr4a2.
類固醇核受體輔助因子2通過上調(diào)Nr4a2促進(jìn)誘導(dǎo)的Treg分化來控制免疫耐受。
74.Biophysical aspects underlying the swarm to biofilm transition.
蜂群向生物膜過渡的生物物理學(xué)方面。
75.EagleC: A deep-learning framework for detecting a full range of structural variations from bulk and single-cell contact maps.
EagleC:?一個深度學(xué)習(xí)框架,用于從體細(xì)胞和單細(xì)胞接觸圖中檢測全方位的結(jié)構(gòu)變化。
76.Amphotericin B assembles into seven-molecule ion channels: An NMR and molecular dynamics study.
兩性霉素B組裝成七個分子的離子通道:?一個核磁共振和分子動力學(xué)研究。
77.CD38 reduces mitochondrial fitness and cytotoxic T cell response against viral infection in lupus patients by suppressing mitophagy.
CD38通過抑制有絲分裂而降低狼瘡患者的線粒體健康和細(xì)胞毒性T細(xì)胞對病毒感染的反應(yīng)。
78.Structure of the rabies virus glycoprotein trimer bound to a prefusion-specific neutralizing antibody.
與融合前特異性中和抗體結(jié)合的狂犬病毒糖蛋白三聚體的結(jié)構(gòu)。
79.Epidemiology beyond its limits.
超越極限的流行病學(xué)。
80.Reviving degraded colors of yellow flowers in 17th century still life paintings with macro- and microscale chemical imaging.
用宏觀和微觀的化學(xué)成像技術(shù)重現(xiàn)17世紀(jì)靜物畫中黃花的退化色彩。
81.Neuronal correlates of selective attention and effort in visual area V4 are invariant of motivational context.
視覺區(qū)V4的選擇性注意和努力的神經(jīng)元相關(guān)因素在動機背景下是不變的。
82.Genetic and pharmacologic proteasome augmentation ameliorates Alzheimer’s-like pathology in mouse and fly APP overexpression models.
遺傳和藥物蛋白酶體的增強改善了小鼠和蒼蠅APP過表達(dá)模型的阿爾茨海默病樣病理。
83.CAV1.3 calcium channels are full-range linear amplifiers of firing frequencies in lateral DA SN neurons.
CAV1.3鈣通道是側(cè)向DA SN神經(jīng)元發(fā)射頻率的全范圍線性放大器。
84.An isogenic panel of App knock-in mouse models: Profiling β-secretase inhibition and endosomal abnormalities.
一個同源的APP敲入小鼠模型:?剖析β-分泌酶的抑制和內(nèi)體的異常。
85.Daily changes in light influence mood via inhibitory networks within the thalamic perihabenular nucleus.
光線的日常變化通過丘腦周圍核的抑制性網(wǎng)絡(luò)影響情緒。
86.Glucose-sensing glucagon-like peptide-1 receptor neurons in the dorsomedial hypothalamus regulate glucose metabolism.
下丘腦背內(nèi)側(cè)胰高血糖素樣肽-1受體神經(jīng)元的葡萄糖感應(yīng)調(diào)節(jié)葡萄糖代謝。
87.Seismological observation of Earth’s oscillating inner core.
地球內(nèi)核振蕩的地震學(xué)觀察。
88.Point mutations that boost aromatic amino acid production and CO2 assimilation in plants.
促進(jìn)植物芳香族氨基酸生產(chǎn)和二氧化碳同化的點突變。
89.Chromatographic separation of active polymer–like worm mixtures by contour length and activity.
通過輪廓線長度和活動性對活性聚合物類蟲子混合物的色譜分離。
90.A community response approach to mental health and substance abuse crises reduced crime.
對精神健康和藥物濫用危機的社區(qū)反應(yīng)方法減少了犯罪。
91.Ubiquitous defect-induced density wave instability in monolayer graphene.
單層石墨烯中普遍存在的缺陷引起的密度波不穩(wěn)定性。
92.Mode selection mechanism in traveling and standing waves revealed by Min wave reconstituted in artificial cells.
人工細(xì)胞中重組的民波揭示了行波和駐波的模式選擇機制。
93.Irradiation-induced grain boundary facet motion: In situ observations and atomic-scale mechanisms.
輻照誘導(dǎo)的晶界面運動:?原位觀察和原子尺度的機制。
94.Topological phase change transistors based on tellurium Weyl semiconductor.
基于碲韋爾半導(dǎo)體的拓?fù)湎嘧兙w管。
95.Deployable mechanical metamaterials with multistep programmable transformation.
可部署的機械超材料的多步驟可編程轉(zhuǎn)換。
96.Accurate measurement of the Sagnac effect for matter waves.
對物質(zhì)波的薩格納克效應(yīng)的精確測量。
97.Synergistic binding sites in a hybrid ultramicroporous material for one-step ethylene purification from ternary C2 hydrocarbon mixtures.
混合型超微孔材料中的協(xié)同結(jié)合點,用于從三元C2烴類混合物中一步法提純乙烯。
98.Universal Josephson diode effect.
通用約瑟夫森二極管效應(yīng)。
99.Thermally switchable, crystallizable oil and silicone composite adhesives for skin-interfaced wearable devices.
用于皮膚界面可穿戴設(shè)備的可熱轉(zhuǎn)換、可結(jié)晶的油和硅樹脂復(fù)合膠粘劑。
100.Isotropic three-dimensional dual-color super-resolution microscopy with metal-induced energy transfer.
各向同性的三維雙色超分辨率顯微鏡與金屬誘導(dǎo)能量轉(zhuǎn)移。
101.Digital selective transformation and patterning of highly conductive hydrogel bioelectronics by laser-induced phase separation.
通過激光誘導(dǎo)相分離實現(xiàn)高導(dǎo)電性水凝膠生物電子學(xué)的數(shù)字選擇性轉(zhuǎn)化和圖案化。
102.Hydrodynamic synchronization and clustering in ratcheting colloidal matter.
棘輪膠體物質(zhì)中的水動力同步和聚類。
103.Excessive local host-graft connectivity in aging and amyloid-loaded brain.
衰老和淀粉樣物質(zhì)負(fù)載的大腦中過度的局部宿主-移植物連接。
104.Brain injury environment critically influences the connectivity of transplanted neurons.
腦損傷環(huán)境對移植神經(jīng)元連通性的關(guān)鍵影響。
105.Single-cell antigen-specific landscape of CAR T infusion product identifies determinants of CD19-positive relapse in patients with ALL.
CAR T輸注產(chǎn)品的單細(xì)胞抗原特異性景觀確定了ALL患者CD19陽性復(fù)發(fā)的決定因素。
106.IFN-γ–dependent tumor-antigen cross-presentation by lymphatic endothelial cells promotes their killing by T cells and inhibits metastasis.
淋巴內(nèi)皮細(xì)胞的IFN-γ依賴性腫瘤抗原交叉呈現(xiàn)促進(jìn)其被T細(xì)胞殺死并抑制轉(zhuǎn)移。
107.Neural network learning defines glioblastoma features to be of neural crest perivascular or radial glia lineages.
神經(jīng)網(wǎng)絡(luò)學(xué)習(xí)將膠質(zhì)母細(xì)胞瘤的特征定義為神經(jīng)嵴血管周圍或放射狀膠質(zhì)細(xì)胞系。
108.Single-cell analysis of human basal cell carcinoma reveals novel regulators of tumor growth and the tumor microenvironment.
人類基底細(xì)胞癌的單細(xì)胞分析揭示了腫瘤生長和腫瘤微環(huán)境的新型調(diào)節(jié)器。
109.The role of ipRGCs in ocular growth and myopia development.
ipRGCs在眼球生長和近視發(fā)展中的作用。
110.Coactivation of antagonistic genes stabilizes polarity patterning during shoot organogenesis.
拮抗基因的共同激活穩(wěn)定了嫩枝器官發(fā)生過程中的極性模式。
111.Gatekeeping role of Nf2/Merlin in vascular tip EC induction through suppression of VEGFR2 internalization.
Nf2/Merlin通過抑制VEGFR2內(nèi)化在血管頂端EC誘導(dǎo)中的把關(guān)作用。
112.The risk variant rs11836367 contributes to breast cancer onset and metastasis by attenuating Wnt signaling via regulating NTN4 expression.
風(fēng)險變體rs11836367通過調(diào)節(jié)NTN4的表達(dá)減弱Wnt信號,有助于乳腺癌的發(fā)病和轉(zhuǎn)移。
113.Promotion of row 1–specific tip complex condensates by Gpsm2-Gαi provides insights into row identity of the tallest stereocilia.
Gpsm2-Gαi促進(jìn)第1行特異性尖端復(fù)合體的凝結(jié),使人們了解到最高立體細(xì)胞的行身份。
114.A reference tissue atlas for the human kidney.
人類腎臟的參考組織圖譜。
115.Cohesin-dependent chromosome loop extrusion is limited by transcription and stalled replication forks.
粘連蛋白依賴的染色體環(huán)擠壓受到轉(zhuǎn)錄和停滯復(fù)制叉的限制。
116.An actin mechanostat ensures hyphal tip sharpness in Phytophthora infestans to achieve host penetration.
肌動蛋白機械調(diào)節(jié)器確保蟲害植物的吸蟲尖銳度以實現(xiàn)宿主穿透。
117.Structural insights into G protein activation by D1 dopamine receptor.
對D1多巴胺受體激活G蛋白的結(jié)構(gòu)性見解。
118.Representation learning in the artificial and biological neural networks underlying sensorimotor integration.
人工和生物神經(jīng)網(wǎng)絡(luò)中的表征學(xué)習(xí)--傳感器運動整合的基礎(chǔ)。
119.Gains in biodiversity conservation and ecosystem services from the expansion of the planet’s protected areas.
擴(kuò)大地球上的保護(hù)區(qū)在生物多樣性保護(hù)和生態(tài)系統(tǒng)服務(wù)方面的收獲。
120.Forecasting mechanical failure and the 26 June 2018 eruption of Sierra Negra Volcano, Galápagos, Ecuador.
預(yù)測機械故障和2018年6月26日厄瓜多爾加拉帕戈斯Sierra Negra火山的噴發(fā)。
121.Evolving magma temperature and volatile contents over the 2008–2018 summit eruption of Kīlauea Volcano.
2008-2018年基拉韋厄火山頂峰噴發(fā)期間不斷變化的巖漿溫度和揮發(fā)性內(nèi)容。
122.Globally ubiquitous negative effects of nitrogen dioxide on crop growth.
全球范圍內(nèi)無處不在的二氧化氮對作物生長的負(fù)面影響。
123.Archean cratonic mantle recycled at a mid-ocean ridge.
太古宙克拉通地幔在大洋中脊回收。
124.Optimization of dynamic soaring in a flap-gliding seabird affects its large-scale distribution at sea.
襟翼滑翔海鳥動態(tài)翱翔的優(yōu)化影響其在海上的大規(guī)模分布
125.Luminescence sediment tracing reveals the complex dynamics of colluvial wedge formation.
Luminescence沉積物追蹤揭示了膠結(jié)物楔子形成的復(fù)雜動態(tài)。
126.Comment on “Improper molecular ferroelectrics with simultaneous ultrahigh pyroelectricity and figures of merit” by Li et al..
對Li等人的?"同時具有超高熱電性和優(yōu)點的不適當(dāng)?shù)姆肿予F電?"的評論。
127.Light-field-driven electronics in the mid-infrared regime: Schottky rectification.
中紅外系統(tǒng)中的光場驅(qū)動電子學(xué):肖特基整流。
128.Response to Comment on “Improper molecular ferroelectrics with simultaneous ultrahigh pyroelectricity and figures of merit”.
對?"同時具有超高熱釋電和優(yōu)點數(shù)字的不當(dāng)分子鐵電?"評論的回應(yīng)。
129.Light-activated molecular machines are fast-acting broad-spectrum antibacterials that target the membrane.
光激活的分子機器是針對膜的快速作用的廣譜抗菌劑。
130.Absolute optical chiral analysis using cavity-enhanced polarimetry.
利用空腔增強偏振法進(jìn)行絕對光學(xué)手性分析。
131.Design of Ru-Ni diatomic sites for efficient alkaline hydrogen oxidation.
用于高效堿性氫氣氧化的Ru-Ni雙原子位點的設(shè)計。
132.Anyonic-parity-time symmetry in complex-coupled lasers.
復(fù)雜耦合激光器中的任性-奇異時間對稱性。
133.Nonlinear elasticity, yielding, and entropy in amorphous solids.
無定形固體中的非線性彈性、屈服和熵。
134.Asymmetric synthesis of flavanols via Cu-catalyzed kinetic resolution of chromenes and their anti-inflammatory activity.
通過Cu催化的chromenes動力學(xué)解析不對稱合成黃烷醇及其抗炎活性。
135.An integrated photonics engine for unsupervised correlation detection.
用于無監(jiān)督相關(guān)檢測的集成光子學(xué)引擎.
136.Geometrically engineered rigid island array for stretchable electronics capable of withstanding various deformation modes.
用于可拉伸電子器件的幾何工程化剛性島陣列能夠承受各種變形模式。
137.Two-dimensional superconductivity at the surfaces of KTaO3 gated with ionic liquid.
KTaO3表面的二維超導(dǎo)性與離子液體的關(guān)系。
138.Grain boundary dynamics driven by magnetically induced circulation at the void interface of 2D colloidal crystals.
二維膠體晶體空隙界面的磁誘導(dǎo)循環(huán)所驅(qū)動的晶界動力學(xué)。
139.Closed-loop additive manufacturing of upcycled commodity plastic through dynamic cross-linking.
通過動態(tài)交聯(lián)對回收的商品塑料進(jìn)行閉環(huán)增材制造。
140.Electronic quantum coherence in glycine molecules probed with ultrashort x-ray pulses in real time.
用超短X射線脈沖實時探測甘氨酸分子的電子量子相干性。
141.Magnetic-field-dependent stimulated emission from nitrogen-vacancy centers in diamond.
金剛石中氮空穴中心的磁場依賴性刺激發(fā)射。
142.Guest-induced amorphous-to-crystalline transformation enables sorting of haloalkane isomers with near-perfect selectivity.
客體誘導(dǎo)的非晶態(tài)到晶態(tài)的轉(zhuǎn)變使鹵代烷烴異構(gòu)體的分選具有近乎完美的選擇性。
143.Formation of the elusive tetrahedral P3N molecule.
難以捉摸的四面體P3N分子的形成。
144.DIRECT-NET: An efficient method to discover cis-regulatory elements and construct regulatory networks from single-cell multiomics data.
DIRECT-NET:?一種從單細(xì)胞多組學(xué)數(shù)據(jù)中發(fā)現(xiàn)順式調(diào)控元素和構(gòu)建調(diào)控網(wǎng)絡(luò)的有效方法。
145.A systems biology approach identifies candidate drugs to reduce mortality in severely ill patients with COVID-19.
一種系統(tǒng)生物學(xué)方法確定了降低COVID-19重癥患者死亡率的候選藥物。
146.Divergent cis-regulatory evolution underlies the convergent loss of sodium channel expression in electric fish.
分歧的順式調(diào)控進(jìn)化是電魚鈉通道表達(dá)趨同損失的基礎(chǔ)。
147.Patched 1 regulates Smoothened by controlling sterol binding to its extracellular cysteine-rich domain.
Patched 1通過控制甾醇與其胞外富含半胱氨酸的結(jié)構(gòu)域的結(jié)合來調(diào)節(jié)Smoothened。
148.Ethylene modulates translation dynamics in Arabidopsis under submergence via GCN2 and EIN2.
乙烯通過GCN2和EIN2調(diào)節(jié)擬南芥在淹沒狀態(tài)下的翻譯動態(tài)。
149.Precise CRISPR-Cas–mediated gene repair with minimal off-target and unintended on-target mutations in human hematopoietic stem cells.
精確的CRISPR-Cas介導(dǎo)的基因修復(fù),在人類造血干細(xì)胞中具有最小的脫靶和非故意的靶向突變。
150.Transcriptional regulation of photoprotection in dark-to-light transition—More than just a matter of excess light energy.
黑暗向光照過渡中光保護(hù)的轉(zhuǎn)錄調(diào)控--不僅僅是過剩光能的問題。
151.Concordance of hydrogen peroxide–induced 8-oxo-guanine patterns with two cancer mutation signatures of upper GI tract tumors.
過氧化氫誘導(dǎo)的8-氧代-鳥嘌呤模式與上消化道腫瘤的兩種癌癥突變特征的一致性。
152.Spatial interplay patterns of cancer nuclei and tumor-infiltrating lymphocytes (TILs) predict clinical benefit for immune checkpoint inhibitors.
癌細(xì)胞核和腫瘤浸潤淋巴細(xì)胞(TILs)的空間相互作用模式預(yù)測免疫檢查點抑制劑的臨床效益。
153.Single-nucleosome imaging reveals steady-state motion of interphase chromatin in living human cells.
單核體成像揭示了人類活細(xì)胞中染色質(zhì)的穩(wěn)態(tài)運動。
154.Microfluidic particle dam for direct visualization of SARS-CoV-2 antibody levels in COVID-19 vaccinees.
用微流控顆粒壩直接觀察COVID-19疫苗接種者的SARS-CoV-2抗體水平。
155.Reciprocity between a retrograde signal and a putative metalloprotease reconfigures plastidial metabolic and structural states.
逆行信號和推定金屬蛋白酶之間的相互作用重新配置了質(zhì)體的代謝和結(jié)構(gòu)狀態(tài)。