human tau Search Results


95
ATCC tau rd p301s yfp
Tau Rd P301s Yfp, supplied by ATCC, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Tau+RD+P301S+FRET+Biosensor%3B+Embryonic+Kidney%3B+Human/bio_rxiv__267724-47-16-17
Average 95 stars, based on 1 article reviews
tau rd p301s yfp - by Bioz Stars, 2026-09
95/100 stars
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93
Elabscience Biotechnology tau proteins
Tau Proteins, supplied by Elabscience Biotechnology, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Human+MAP%CF%84+(Microtubule+Associated+Protein+Tau%2FTau+Protein)+ELISA+Kit/pmc11285547-177-10-33
Average 93 stars, based on 1 article reviews
tau proteins - by Bioz Stars, 2026-09
93/100 stars
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90
OriGene mapt expression vectors
Mapt Expression Vectors, supplied by OriGene, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Tau+(MAPT)+(NM_016835)+Human+Tagged+ORF+Clone/us10653688-1327-3-9
Average 90 stars, based on 1 article reviews
mapt expression vectors - by Bioz Stars, 2026-09
90/100 stars
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94
R&D Systems recombinant human tau protein
a, Schematic of oligomerization from <t>recombinant</t> human 2N4R <t>human</t> <t>tau</t> monomers (rTauM) to oligomers (rTauO) and imaging workflow. b, Amide-I band intensity histograms of rTauM (green) and rTauO (orange) particles with Gaussian fits ( n = 200 for each). c, Amide-I band intensity versus apparent oligomer order (rTauM, green; rTauO, orange). Order 1 corresponds to the rTauM population. Data points represent the mean of each peak in b . Error bars indicate the fitted Gaussian FWHM. d–e, Heatmaps of IR-AMES spectra from monomers ( d ) and oligomers ( e ), sorted by integrated intensity. Cartoons illustrate that monomers, although structurally dynamic, remain predominantly random coil, whereas oligomers exhibit more heterogeneous secondary structures. Detailed conformations predicted by AlphaFold3 are provided in the Supplementary Note 5 and Supplementary Fig. 13. f, Quantification of fitted spectral components obtained from Lorentzian deconvolution of the amide-I band (see Extended Data Fig. 4 for representative fitting examples). Monomers show a narrow distribution dominated by random-coil features, whereas oligomers exhibit a broader heterogeneity with increased β-sheet structures. All groups were expressed as mean ± s.d. g, Representative average spectra for monomers (green) and oligomers (orange). Solid lines: mean spectra, shaded regions: standard deviation. Ensemble averages show minimal spectral differences, highlighting that conformational diversity is primarily resolved in IR-AMES.
Recombinant Human Tau Protein, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Recombinant+Human+Tau+Protein%2C+CF/bio_rxiv__64898__2026__03__12__711458-171-0-7
Average 94 stars, based on 1 article reviews
recombinant human tau protein - by Bioz Stars, 2026-09
94/100 stars
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92
OriGene pcmv6 ncor2 plasmid
Drug resistance assays.
Pcmv6 Ncor2 Plasmid, supplied by OriGene, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/NCOR2+(NM_006312)+Human+Tagged+ORF+Clone/pmc05823449-96-8-12
Average 92 stars, based on 1 article reviews
pcmv6 ncor2 plasmid - by Bioz Stars, 2026-09
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92
Cusabio t tau csbe12011h kit
Drug resistance assays.
T Tau Csbe12011h Kit, supplied by Cusabio, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Human+Tau+proteins+ELISA+kit/pmc10916449-104-13-16
Average 92 stars, based on 1 article reviews
t tau csbe12011h kit - by Bioz Stars, 2026-09
92/100 stars
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90
OriGene tau 4r 1n
Drug resistance assays.
Tau 4r 1n, supplied by OriGene, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Tau+(MAPT)+(NM_173727)+Human+Untagged+Clone/pm26786552-291-3-12
Average 90 stars, based on 1 article reviews
tau 4r 1n - by Bioz Stars, 2026-09
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93
R&D Systems human tau
Drug resistance assays.
Human Tau, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Human+Tau+Antibody/pm40670683-583-7-16
Average 93 stars, based on 1 article reviews
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93
OriGene human tau
Drug resistance assays.
Human Tau, supplied by OriGene, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Tau+(MAPT)+(NM_005910)+Human+Tagged+ORF+Clone/pmc07329553-111-5-7
Average 93 stars, based on 1 article reviews
human tau - by Bioz Stars, 2026-09
93/100 stars
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90
OriGene tau gfp fusion gene
Drug resistance assays.
Tau Gfp Fusion Gene, supplied by OriGene, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Tau+(MAPT)+(NM_016834)+Human+Tagged+ORF+Clone+Lentiviral+Particle/pm32181806-61-6-13
Average 90 stars, based on 1 article reviews
tau gfp fusion gene - by Bioz Stars, 2026-09
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94
R&D Systems tau microtubule binding domain
Drug resistance assays.
Tau Microtubule Binding Domain, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Recombinant+Human+Tau+K18%2FTau+PHF+Core+Protein%2C+CF/10__1016_slash_j__jbc__2021__100715-242-5-14
Average 94 stars, based on 1 article reviews
tau microtubule binding domain - by Bioz Stars, 2026-09
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91
Novus Biologicals pff
Drug resistance assays.
Pff, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 91/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/human+tau/Recombinant+Human+Tau+441+Active%2C+P301S+Mutant%2C+Pre-formed+Fibrils+Protein/pmc09901469-78-1-8
Average 91 stars, based on 1 article reviews
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Image Search Results


a, Schematic of oligomerization from recombinant human 2N4R human tau monomers (rTauM) to oligomers (rTauO) and imaging workflow. b, Amide-I band intensity histograms of rTauM (green) and rTauO (orange) particles with Gaussian fits ( n = 200 for each). c, Amide-I band intensity versus apparent oligomer order (rTauM, green; rTauO, orange). Order 1 corresponds to the rTauM population. Data points represent the mean of each peak in b . Error bars indicate the fitted Gaussian FWHM. d–e, Heatmaps of IR-AMES spectra from monomers ( d ) and oligomers ( e ), sorted by integrated intensity. Cartoons illustrate that monomers, although structurally dynamic, remain predominantly random coil, whereas oligomers exhibit more heterogeneous secondary structures. Detailed conformations predicted by AlphaFold3 are provided in the Supplementary Note 5 and Supplementary Fig. 13. f, Quantification of fitted spectral components obtained from Lorentzian deconvolution of the amide-I band (see Extended Data Fig. 4 for representative fitting examples). Monomers show a narrow distribution dominated by random-coil features, whereas oligomers exhibit a broader heterogeneity with increased β-sheet structures. All groups were expressed as mean ± s.d. g, Representative average spectra for monomers (green) and oligomers (orange). Solid lines: mean spectra, shaded regions: standard deviation. Ensemble averages show minimal spectral differences, highlighting that conformational diversity is primarily resolved in IR-AMES.

Journal: bioRxiv

Article Title: IR-AMES uncovers structure and composition of Alzheimer’s tau oligomers

doi: 10.64898/2026.03.12.711458

Figure Lengend Snippet: a, Schematic of oligomerization from recombinant human 2N4R human tau monomers (rTauM) to oligomers (rTauO) and imaging workflow. b, Amide-I band intensity histograms of rTauM (green) and rTauO (orange) particles with Gaussian fits ( n = 200 for each). c, Amide-I band intensity versus apparent oligomer order (rTauM, green; rTauO, orange). Order 1 corresponds to the rTauM population. Data points represent the mean of each peak in b . Error bars indicate the fitted Gaussian FWHM. d–e, Heatmaps of IR-AMES spectra from monomers ( d ) and oligomers ( e ), sorted by integrated intensity. Cartoons illustrate that monomers, although structurally dynamic, remain predominantly random coil, whereas oligomers exhibit more heterogeneous secondary structures. Detailed conformations predicted by AlphaFold3 are provided in the Supplementary Note 5 and Supplementary Fig. 13. f, Quantification of fitted spectral components obtained from Lorentzian deconvolution of the amide-I band (see Extended Data Fig. 4 for representative fitting examples). Monomers show a narrow distribution dominated by random-coil features, whereas oligomers exhibit a broader heterogeneity with increased β-sheet structures. All groups were expressed as mean ± s.d. g, Representative average spectra for monomers (green) and oligomers (orange). Solid lines: mean spectra, shaded regions: standard deviation. Ensemble averages show minimal spectral differences, highlighting that conformational diversity is primarily resolved in IR-AMES.

Article Snippet: Recombinant human tau protein was purchased from R&D Systems, Inc (SP-495).

Techniques: Recombinant, Imaging, Standard Deviation

a, Recombinant human 2N4R tau monomers (rTauM). b, Recombinant human 2N4R tau oligomers (rTauO). Each spectrum was normalized to 0–1 and decomposed into five secondary-structure components within the amide-I region: parallel β-sheet, random coil, α-helix, β-turn, and antiparallel β-sheet. Colored areas represent the contribution of each component, and solid black lines represent the fitted total spectrum. The integrated areas of these components were used to generate the single-particle structural distributions shown in .

Journal: bioRxiv

Article Title: IR-AMES uncovers structure and composition of Alzheimer’s tau oligomers

doi: 10.64898/2026.03.12.711458

Figure Lengend Snippet: a, Recombinant human 2N4R tau monomers (rTauM). b, Recombinant human 2N4R tau oligomers (rTauO). Each spectrum was normalized to 0–1 and decomposed into five secondary-structure components within the amide-I region: parallel β-sheet, random coil, α-helix, β-turn, and antiparallel β-sheet. Colored areas represent the contribution of each component, and solid black lines represent the fitted total spectrum. The integrated areas of these components were used to generate the single-particle structural distributions shown in .

Article Snippet: Recombinant human tau protein was purchased from R&D Systems, Inc (SP-495).

Techniques: Recombinant, Single Particle

a, Atomic force microscopy images of Alzheimer’s disease patient derived tau oligomers (AD TauO) and fibrils (AD TauF). Scale bars: 250 nm. AD TauO appear as spherical or ellipsoidal particles wih heights of 5–8 nm and lateral dimensions of ∼40 nm. AD TauF appear as short fragmented rods with heights of ∼10 nm, lateral widths of ∼30–50 nm, and lengths ranging from 100 to 500 nm. Dimensions were measured along the white dashed lines, details are provided in Supplementary Fig. 14. b–c, Cytotoxicity of iPSC-derived neurons treated with human tau for 24 h, quantified by LDH release ( b ) and cleaved caspase-3–positive area relative to TUJ1 ( c ). n = 6. Data were expressed as mean ± s.d. Column means were compared using two-way ANOVA, with ****p < 0.0001. d, IR-AMES image of AD TauO and age-matched normal human derived tau oligomers (Ctrl TauO) at the amide-I band. Scale bars: 1 µm. e, Heatmaps of IR-AMES spectra from AD TauO and Ctrl TauO, n = 150. Spectra were normalized to 0–1. f–g, IR-AMES image of AD TauO and Ctrl TauO at the antiparallel β-sheet channel ( f ) and RNA channel ( g ). Scale bars: 1 µm. h–j, Heatmaps of IR-MAES spectra from AD TauO with endonuclease benzonase (AD TauO w/Benz) treatment ( h ), AD TauF ( i ) and normal human derived tau fibrils (Ctrl TauF) ( j ), n = 150. Spectra were normalized to 0–1. k, Quantification of antiparallel β-sheets and RNA content from human tau in e and h–j . Values were derived from Lorentzian deconvolution of the amide-I region (see Extended Data Fig. 6 for representative fits). All groups were expressed as mean ± s.d. Column means were compared using one-way ANOVA, with ****p < 0.0001, and ns for not significance. l, t-SNE visualization of all spectra from individual tau assemblies, revealing structure-dependent clustering patterns. Each dot indicates a single-particle spectrum.

Journal: bioRxiv

Article Title: IR-AMES uncovers structure and composition of Alzheimer’s tau oligomers

doi: 10.64898/2026.03.12.711458

Figure Lengend Snippet: a, Atomic force microscopy images of Alzheimer’s disease patient derived tau oligomers (AD TauO) and fibrils (AD TauF). Scale bars: 250 nm. AD TauO appear as spherical or ellipsoidal particles wih heights of 5–8 nm and lateral dimensions of ∼40 nm. AD TauF appear as short fragmented rods with heights of ∼10 nm, lateral widths of ∼30–50 nm, and lengths ranging from 100 to 500 nm. Dimensions were measured along the white dashed lines, details are provided in Supplementary Fig. 14. b–c, Cytotoxicity of iPSC-derived neurons treated with human tau for 24 h, quantified by LDH release ( b ) and cleaved caspase-3–positive area relative to TUJ1 ( c ). n = 6. Data were expressed as mean ± s.d. Column means were compared using two-way ANOVA, with ****p < 0.0001. d, IR-AMES image of AD TauO and age-matched normal human derived tau oligomers (Ctrl TauO) at the amide-I band. Scale bars: 1 µm. e, Heatmaps of IR-AMES spectra from AD TauO and Ctrl TauO, n = 150. Spectra were normalized to 0–1. f–g, IR-AMES image of AD TauO and Ctrl TauO at the antiparallel β-sheet channel ( f ) and RNA channel ( g ). Scale bars: 1 µm. h–j, Heatmaps of IR-MAES spectra from AD TauO with endonuclease benzonase (AD TauO w/Benz) treatment ( h ), AD TauF ( i ) and normal human derived tau fibrils (Ctrl TauF) ( j ), n = 150. Spectra were normalized to 0–1. k, Quantification of antiparallel β-sheets and RNA content from human tau in e and h–j . Values were derived from Lorentzian deconvolution of the amide-I region (see Extended Data Fig. 6 for representative fits). All groups were expressed as mean ± s.d. Column means were compared using one-way ANOVA, with ****p < 0.0001, and ns for not significance. l, t-SNE visualization of all spectra from individual tau assemblies, revealing structure-dependent clustering patterns. Each dot indicates a single-particle spectrum.

Article Snippet: Recombinant human tau protein was purchased from R&D Systems, Inc (SP-495).

Techniques: Microscopy, Derivative Assay, Single Particle

a ,: Schematic illustrating the co-incubation of human-derived tau aggregates with lipid nanodiscs (NDs) to form tau–ND complexes for IR-AMES imaging. b, Representative IR-AMES images of NDs composed of phosphatidylcholine and phosphatidylserine (PC+PS) or PC only, shown for integrated amide-I and lipid signals. Scale bars, 1 µm. c, Heatmaps of IR-AMES spectra from ND (PC+PS) ( n = 119) and ND (PC) ( n = 165). Spectra were normalized to 0–1 and ordered by lipid intensity. d, Average spectra of NDs. Solid lines: mean spectra, shaded regions: standard deviation. e, Representative images of AD TauO and Ctrl TauO following NDs incubation. Scale bars, 1 µm. f, Heatmaps of spectra from AD TauO–ND (PC+PS) ( n = 225), AD TauO–ND (PC) ( n = 115), and Ctrl TauO–ND (PC+PS) ( n = 140), highlighting distinct protein secondary-structure and lipid-associated spectral features. Spectra for AD TauO–ND spectra were ordered by antiparallel β-sheet contribution. g, Average spectra of lipid-poor ( n = 25) and lipid-enriched ( n = 25) subsets derived from f , compared with tau aggregates alone ( n = 150 for each). Spectra were normalized to 0–1 and vertically offset for display in d and g . h, Quantification of antiparallel β-sheet and lipid contributions from IR-AMES spectra using Lorentzian fitting. All groups were expressed as mean ± s.d. Column means were compared using one-way ANOVA, with ****p < 0.0001, and ns for not significance. i, Single-particle correlation analysis of lipid content and antiparallel β-sheet contribution in AD TauO–ND (PC+PS), revealing a moderate negative correlation (Pearson’s r = –0.56). j, 8-anilino-1-naphthalenesulfonic acid (ANS) fluorescence spectra of human tau ( n = 3, solid lines: mean spectra, shaded regions: standard deviation), indicating enhanced surface hydrophobicity of AD TauO relative to controls.

Journal: bioRxiv

Article Title: IR-AMES uncovers structure and composition of Alzheimer’s tau oligomers

doi: 10.64898/2026.03.12.711458

Figure Lengend Snippet: a ,: Schematic illustrating the co-incubation of human-derived tau aggregates with lipid nanodiscs (NDs) to form tau–ND complexes for IR-AMES imaging. b, Representative IR-AMES images of NDs composed of phosphatidylcholine and phosphatidylserine (PC+PS) or PC only, shown for integrated amide-I and lipid signals. Scale bars, 1 µm. c, Heatmaps of IR-AMES spectra from ND (PC+PS) ( n = 119) and ND (PC) ( n = 165). Spectra were normalized to 0–1 and ordered by lipid intensity. d, Average spectra of NDs. Solid lines: mean spectra, shaded regions: standard deviation. e, Representative images of AD TauO and Ctrl TauO following NDs incubation. Scale bars, 1 µm. f, Heatmaps of spectra from AD TauO–ND (PC+PS) ( n = 225), AD TauO–ND (PC) ( n = 115), and Ctrl TauO–ND (PC+PS) ( n = 140), highlighting distinct protein secondary-structure and lipid-associated spectral features. Spectra for AD TauO–ND spectra were ordered by antiparallel β-sheet contribution. g, Average spectra of lipid-poor ( n = 25) and lipid-enriched ( n = 25) subsets derived from f , compared with tau aggregates alone ( n = 150 for each). Spectra were normalized to 0–1 and vertically offset for display in d and g . h, Quantification of antiparallel β-sheet and lipid contributions from IR-AMES spectra using Lorentzian fitting. All groups were expressed as mean ± s.d. Column means were compared using one-way ANOVA, with ****p < 0.0001, and ns for not significance. i, Single-particle correlation analysis of lipid content and antiparallel β-sheet contribution in AD TauO–ND (PC+PS), revealing a moderate negative correlation (Pearson’s r = –0.56). j, 8-anilino-1-naphthalenesulfonic acid (ANS) fluorescence spectra of human tau ( n = 3, solid lines: mean spectra, shaded regions: standard deviation), indicating enhanced surface hydrophobicity of AD TauO relative to controls.

Article Snippet: Recombinant human tau protein was purchased from R&D Systems, Inc (SP-495).

Techniques: Incubation, Derivative Assay, Imaging, Standard Deviation, Single Particle, Fluorescence

Drug resistance assays.

Journal: PLoS ONE

Article Title: The pregnane X receptor (PXR) and the nuclear receptor corepressor 2 (NCoR2) modulate cell growth in head and neck squamous cell carcinoma

doi: 10.1371/journal.pone.0193242

Figure Lengend Snippet: Drug resistance assays.

Article Snippet: Cells were transfected with 1 μg of the pCMV6-NCoR2 plasmid (Clone RC212113, Origene, Rockville, USA) encoding the transcript variant 1 of the corepressor, previously described as the main NCoR2 isoform interacting with PXR [ ].

Techniques: