SASDXK4

Mouse murine Immunoglobulin E (IgE) antibody

数据类型:SASBDB 实验数据 状态:Published 曲线类型:SEC-SAS 最后更新:2025-09-17T10:13:09.722579+02:00

Synchrotron SAXS data from solutions of Mouse complex murine Immunoglobulin E (IgE) antibody in 20 mM Tris, 50 mM NaCl, pH 8.4 were collected on the P12 beamline at DESY (Hamburg, Germany) using a Pilatus 6M-Dectris detector at a sample-detector distance of 3.0 m and a wavelength of λ = 0.124 nm (I(s) vs s, where s = 4πsinθ/λ, and 2θ is the scattering angle). In-line size-exclusion chromatography (SEC) SAS was employed. The SEC parameters were as follows: A 50.00 μl sample at 6.0 mg/ml was injected at a 0.75 ml/min flow rate onto a GE Superdex 200 Increase 10/300 column at 15°C. 3000 successive 1.0-second frames were collected. The data were normalized to the intensity of the transmitted beam and radially averaged; the scattering of the solvent-blank was subtracted.

1. 样品、组分与实验条件 Sample & Experiment

样品 1 · Mouse murine Immunoglobulin E (IgE) antibody

浓度— – 6.5 缓冲液 / pH20 mM Tris, 50 mM NaCl / 8.4
实验温度20.0 设备 / 束线PETRA III / EMBL P12
波长0.124 nm曝光1.0 s × 3000

分子组分

组分类型 / 物种UniProt 与构建体寡聚状态分子量
Murine Immunoglobulin E (IgE) antibodies
查看序列
EVQLVESGGGLVQPKGSLKLSCAASGFTFNTYAMNWVRQAPGKGLEWVARIRTKTNNYVTYYADSVKDRFTISRDDSQSMLYLQMNNLKTEDTAMYYCVRHVGDYWGQGTSVTVSSASIRNPQLYPLKPCKSMTLGCLVKDYFPGPVTVTWYSDSLNMSTVNFPALGSELKVTTSQVTSWGKSAKNFTCHVTHPPSFNESRTILVRPVNITEPTLELLHSSCDPNAFHSTIQLYCFIYGHILNDVSVSWLMDDREITDTLAQTVLIKEEGKLASTCSKLNITEQQWMSESTFTCKVTSQGVDYLAHTRRCPDHEPRGVITYLIPPSPLDLYQNGAPKLTCLVVDLESEKNVNVTWNQEKKTSVSASQWYTKHHNNATTSITSILPVVAKDWIEGYGYQCIVDHPDFPKPIVRSITKTPGQRSAPEVYVFPPPEEESEDKRTLTCLIQNFFPEDISVQWLGDGKLISNSQHSTTTPLKSNGSNQGFFIFSRLEVAKTLWTQRKQFTCQVIHEALQKPRKLEKTISTSDIQMTQSPASLSASVGETVTITCRASGNIHNYLAWFQQKQGKSPQLLVYNAKTLADGVPSRFSGSGSGTQYSLKINSLQPEDFGSYYCQHFWSTPYTFGGGTKLEIKRADAAPTVSIFPPSSEQLTSGGASVVCFLNNFYPKDINVKWKIDGSERQNGVLNSWTDQDSKDSTYSMSSTLTLTKDEYERHNSYTCEATHKTSTSPIVKSFNRNEEVQLVESGGGLVQPKGSLKLSCAASGFTFNTYAMNWVRQAPGKGLEWVARIRTKTNNYVTYYADSVKDRFTISRDDSQSMLYLQMNNLKTEDTAMYYCVRHVGDYWGQGTSVTVSSASIRNPQLYPLKPCKSMTLGCLVKDYFPGPVTVTWYSDSLNMSTVNFPALGSELKVTTSQVTSWGKSAKNFTCHVTHPPSFNESRTILVRPVNITEPTLELLHSSCDPNAFHSTIQLYCFIYGHILNDVSVSWLMDDREITDTLAQTVLIKEEGKLASTCSKLNITEQQWMSESTFTCKVTSQGVDYLAHTRRCPDHEPRGVITYLIPPSPLDLYQNGAPKLTCLVVDLESEKNVNVTWNQEKKTSVSASQWYTKHHNNATTSITSILPVVAKDWIEGYGYQCIVDHPDFPKPIVRSITKTPGQRSAPEVYVFPPPEEESEDKRTLTCLIQNFFPEDISVQWLGDGKLISNSQHSTTTPLKSNGSNQGFFIFSRLEVAKTLWTQRKQFTCQVIHEALQKPRKLEKTISTSLDIQMTQSPASLSASVGETVTITCRASGNIHNYLAWFQQKQGKSPQLLVYNAKTLADGVPSRFSGSGSGTQYSLKINSLQPEDFGSYYCQHFWSTPYTFGGGTKLEIKRADAAPTVSIFPPSSEQLTSGGASVVCFLNNFYPKDINVKWKIDGSERQNGVLNSWTDQDSKDSTYSMSSTLTLTKDEYERHNSYTCEATHKTSTSPIVKSFNRNE
proteinMus musculus—–—monomer分子数 1165.383 kDa

实验曲线

曲线点数 / 列q 范围误差质量负强度点来源文件
12591[3]0.02255827–7.269159 1/nm含误差列缺失 0132sasbdb/entries/k4/sasdxk4/source/SASDXK4.dat

2. SASBDB 报告的指标 Reported Results

指标方法数值误差单位
dmaxP(r)16.28nm
i0Guinier0.02097711/cm
i0P(r)0.021411/cm
mwExperimental208.0kDa
mwGuinier I(0)0.0210.0kDa
mwPorod247.0kDa
porod_volumePorod420.0nm³
rgGuinier5.1930.031nm
rgP(r)5.39nm

这些数值是 SASBDB 来源记录,不是 SAXSdb 对实验曲线重新计算的结果。

3. 来源拟合与模型 Source Fits & Models

4. 来源文件索引 Source Files

5. 实验说明与论文 Experiment & Publication

6. 完整来源记录 Complete Source Record

下列内容直接来自 SASBDB 条目。字段没有值时显示“—”;未声明的单位不会由 SAXSdb 猜测。

打开 SASBDB 原始条目

缓冲液与样品属性

缓冲液名称20 mM Tris, 50 mM NaCl缓冲液浓度
pH8.4添加剂
缓冲液说明
纯度测定方法消光系数
吸收值散射对比度
比体积 / 干体积— / —混合物 / 氘代— / —

采集条件与仪器

测量日期2025-04-11储存 / 测量温度4.0 / 20.0
曝光时间1.0帧数3000
波长0.124样品-探测器距离3.0
光源X-ray synchrotron探测器Pilatus 6M
机构 / 束线PETRA III / EMBL P12 · DESY; Hamburg, Germany
q 范围0.023 – 7.269样品体积 / 流速50.0 / 0.75

SASBDB 原始图

实验 I(q)
实验 I(q)
实验 I(q) log-log
实验 I(q) log-log
Guinier 图
Guinier 图
Kratky 图
Kratky 图
P(r) 图
P(r) 图

可下载文件

类别文件状态大小校验值下载与查看
curvesasbdb/entries/k4/sasdxk4/source/SASDXK4.datdownloaded46086606289a552d5b087490142958f378c4242fb11efee9b36de882b0ecd02736cc8e下载查看原文件源站
full_entry_zipsasbdb/entries/k4/sasdxk4/source/SASDXK4.zipdownloaded3350904c0c1d91d14c31eca4559d5eca17f51230bfa8573ee4cc1999b9ca962eef8f70下载查看原文件源站
pddfsasbdb/entries/k4/sasdxk4/source/SASDXK4.outdownloaded49116ab7508b1aed77b3db20389089f140512fa456a9680aa7329e1d6746364e42f31下载查看原文件源站
sascifsasbdb/entries/k4/sasdxk4/source/SASDXK4.sascifnot_available下载查看原文件源站
summarysasbdb/entries/k4/sasdxk4/source/summary.jsondownloaded10661223b7d33abf0da2845071a30f1edde990f6202d161fdde3723c3cbf78639787a下载查看原文件源站
curve:来源记录
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full_entry_zip:来源记录与 ZIP 内部目录(6 项)
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pddf:来源记录
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sascif:来源记录
{
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  "role": "sascif",
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summary:来源记录
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全部来源字段(无筛选)

这里自动展开来源记录中的每一个字段,包括空值、列表成员和页面上方已展示过的字段。

summary.json:179 个字段值
字段路径原始值
codeSASDXK4
statusPublished
type_of_curveSEC-SAS
angular_unit1/nm
project.titleAllergen-induced structural rearrangements in IgE: insights from SAXS and molecular dynamics.
project.publication.titleAllergen-induced structural rearrangements in IgE: insights from SAXS and molecular dynamics.
project.publication.author_listGómez-Velasco H, García-Ramírez B, Siliqi D, Graewert MA, Quintero-Martinez A, Ortega E, Rodríguez-Romero A
project.publication.journalInt J Biol Macromol
project.publication.doi10.1016/j.ijbiomac.2025.147658
project.publication.pmid40953619
project.publication.published_date2025 Sep 13
project.statusreleased
project.submitted_date2025-05-07
project.released_date2025-09-17
pddf_datahttps://www.sasbdb.org/media/p_of_R_files/SASDXK4.out
intensities_datahttps://www.sasbdb.org/media/intensities_files/SASDXK4.dat
intensities_log_plothttps://www.sasbdb.org/media/intensities_files/scattering_plots/SASDXK4_dat_img.png
intensities_kratky_plothttps://www.sasbdb.org/media/intensities_files/scattering_plots/SASDXK4_kratky_img.png
pddf_plothttps://www.sasbdb.org/media/p_of_R_files/pofr_images/SASDXK4_pofr_img.png
intensities_guinier_plothttps://www.sasbdb.org/media/intensities_files/scattering_plots/SASDXK4_guinier_img.png
sascif_datahttps://www.sasbdb.org/media/sascif/sascif_files/SASDXK4.sascif
experiment.instrument.detector.typenull
experiment.instrument.detector.namePilatus 6M
experiment.instrument.detector.resolutionnull
experiment.instrument.namePETRA III
experiment.instrument.cityDESY; Hamburg
experiment.instrument.countryGermany
experiment.instrument.beamline_nameEMBL P12
experiment.instrument.beam_geometrynull
experiment.instrument.type_of_sourceX-ray synchrotron
experiment.instrument.point_sourcenull
experiment.instrument.line_collimationnull
experiment.instrument.sample_path_lengthnull
experiment.instrument.line_collimation_slitlengthnull
experiment.instrument.line_collimation_integrationwidthnull
experiment.instrument.xray_energynull
experiment.instrument.beam_profile_ahnull
experiment.instrument.beam_profile_alnull
experiment.sample.molecule[0].long_nameMurine Immunoglobulin E (IgE) antibodies
experiment.sample.molecule[0].short_nameIgE
experiment.sample.molecule[0].sequenceEVQLVESGGGLVQPKGSLKLSCAASGFTFNTYAMNWVRQAPGKGLEWVARIRTKTNNYVTYYADSVKDRFTISRDDSQSM LYLQMNNLKTEDTAMYYCVRHVGDYWGQGTSVTVSSASIRNPQLYPLKPCKSMTLGCLVKDYFPGPVTVTWYSDSLNMST VNFPALGSELKVTTSQVTSWGKSAKNFTCHVTHPPSFNESRTILVRPVNITEPTLELLHSSCDPNAFHSTIQLYCFIYGH ILNDVSVSWLMDDREITDTLAQTVLIKEEGKLASTCSKLNITEQQWMSESTFTCKVTSQGVDYLAHTRRCPDHEPRGVIT YLIPPSPLDLYQNGAPKLTCLVVDLESEKNVNVTWNQEKKTSVSASQWYTKHHNNATTSITSILPVVAKDWIEGYGYQCI VDHPDFPKPIVRSITKTPGQRSAPEVYVFPPPEEESEDKRTLTCLIQNFFPEDISVQWLGDGKLISNSQHSTTTPLKSNG SNQGFFIFSRLEVAKTLWTQRKQFTCQVIHEALQKPRKLEKTISTS DIQMTQSPASLSASVGETVTITCRASGNIHNYLAWFQQKQGKSPQLLVYNAKTLADGVPSRFSGSGSGTQYSLKINSLQP EDFGSYYCQHFWSTPYTFGGGTKLEIKRADAAPTVSIFPPSSEQLTSGGASVVCFLNNFYPKDINVKWKIDGSERQNGVL NSWTDQDSKDSTYSMSSTLTLTKDEYERHNSYTCEATHKTSTSPIVKSFNRNE EVQLVESGGGLVQPKGSLKLSCAASGFTFNTYAMNWVRQAPGKGLEWVARIRTKTNNYVTYYADSVKDRFTISRDDSQSM LYLQMNNLKTEDTAMYYCVRHVGDYWGQGTSVTVSSASIRNPQLYPLKPCKSMTLGCLVKDYFPGPVTVTWYSDSLNMST VNFPALGSELKVTTSQVTSWGKSAKNFTCHVTHPPSFNESRTILVRPVNITEPTLELLHSSCDPNAFHSTIQLYCFIYGH ILNDVSVSWLMDDREITDTLAQTVLIKEEGKLASTCSKLNITEQQWMSESTFTCKVTSQGVDYLAHTRRCPDHEPRGVIT YLIPPSPLDLYQNGAPKLTCLVVDLESEKNVNVTWNQEKKTSVSASQWYTKHHNNATTSITSILPVVAKDWIEGYGYQCI VDHPDFPKPIVRSITKTPGQRSAPEVYVFPPPEEESEDKRTLTCLIQNFFPEDISVQWLGDGKLISNSQHSTTTPLKSNG SNQGFFIFSRLEVAKTLWTQRKQFTCQVIHEALQKPRKLEKTISTSL DIQMTQSPASLSASVGETVTITCRASGNIHNYLAWFQQKQGKSPQLLVYNAKTLADGVPSRFSGSGSGTQYSLKINSLQP EDFGSYYCQHFWSTPYTFGGGTKLEIKRADAAPTVSIFPPSSEQLTSGGASVVCFLNNFYPKDINVKWKIDGSERQNGVL NSWTDQDSKDSTYSMSSTLTLTKDEYERHNSYTCEATHKTSTSPIVKSFNRNE
experiment.sample.molecule[0].organismMus musculus
experiment.sample.molecule[0].uniprot_codenull
experiment.sample.molecule[0].uniprot_range_firstnull
experiment.sample.molecule[0].uniprot_range_lastnull
experiment.sample.molecule[0].oligomerizationmonomer
experiment.sample.molecule[0].molecular_typeprotein
experiment.sample.molecule[0].uniprot_sequence
experiment.sample.molecule[0].mw165.383
experiment.sample.molecule[0].total_mw165.383
experiment.sample.molecule[0].number_molecules1
experiment.sample.molecule[0].complex_stateFalse
experiment.sample.molecule[0].deuterationnull
experiment.sample.molecule[0].molecule_sourcebiological
experiment.sample.molecule[0].molecule_descriptionThe molecular weight of a murine IgE, considering glycosylations, is approximately 190-198 kDa (protein 180 kDa + 10-18 kDa glycosylation). This is a rough estimate; the actual molecular weight can vary depending on the specific glycosylation patterns and modifications of the IgE molecule.
experiment.sample.buffer.name20 mM Tris, 50 mM NaCl
experiment.sample.buffer.concentration_unitnull
experiment.sample.buffer.commentnull
experiment.sample.buffer.additivenull
experiment.sample.buffer.concentrationnull
experiment.sample.buffer.pkanull
experiment.sample.buffer.ph8.4
experiment.sample.buffer.deuterationnull
experiment.sample.purity_methodnull
experiment.sample.nameMouse murine Immunoglobulin E (IgE) antibody
experiment.sample.ext_coefficientnull
experiment.sample.contrastnull
experiment.sample.specific_volnull
experiment.sample.dry_volnull
experiment.sample.absorbptionnull
experiment.sample.deuterationnull
experiment.sample.mixturenull
experiment.contributor[0].affiliation[0].short_namenull
experiment.contributor[0].affiliation[0].addressBari, Italy
experiment.contributor[0].affiliation[0].full_nameCNR - Institute of Crystallography, Bari, Italy
experiment.contributor[0].affiliation[0].webpagehttp://www.ba.ic.cnr.it
experiment.contributor[0].contributor_nameDritan
experiment.contributor[0].contributor_surnameSiliqi
experiment.contributor[0].orcidhttps://orcid.org/0000-0003-1415-8725
experiment.concentration_methodnull
experiment.concentration_unitnull
experiment.date2025-04-11
experiment.storage_temperature4.0
experiment.cell_temperature20.0
experiment.exposure_time1.0
experiment.number_of_frames3000
experiment.wavelength0.124
experiment.sample_detector_distance3.0
experiment.concentration_minnull
experiment.concentration_max6.5
experiment.sample_volume50.0
experiment.flow_rate0.75
experiment.s_min0.023
experiment.s_max7.269
experiment.total_exposure_timenull
experiment.seccolumn1
fits[0].models[0].model_plothttps://www.sasbdb.org/media/pdb_file/images/SASDXK4_fit1_model1_img.png
fits[0].models[0].softwareDAMMIF
fits[0].models[0].pdb_link[]
fits[0].models[0].model_titlenull
fits[0].models[0].type_of_modeldummy
fits[0].models[0].software_versionnull
fits[0].models[0].model_datahttps://www.sasbdb.org/media/pdb_file/SASDXK4_fit1_model1.cif
fits[0].models[0].model_mwnull
fits[0].models[0].bead_radiusnull
fits[0].models[0].loghttps://www.sasbdb.org/media/log_files/IgE_SEC_absolute_003.log
fits[0].models[0].symmetrynull
fits[0].models[0].commentnull
fits[0].models[0].user396
fits[0].fit_unit1/A
fits[0].fit_plothttps://www.sasbdb.org/media/fitting_files/scattering_plots/SASDXK4_fit1_fixed_fit_img.png
fits[0].softwareDAMMIF
fits[0].chi_square_value1.024
fits[0].p_value0.8631
fits[0].fit_residual_plotSASDXK4_fit1_fitresiduals_img.png
fits[0].fit_datahttps://www.sasbdb.org/media/fitting_files/SASDXK4_fit1.fir
fits[0].fit_lognull
fits[0].software_version4.0
fits[0].description
fits[1].models[0].model_plothttps://www.sasbdb.org/media/pdb_file/images/SASDXK4_fit2_model1_img.png
fits[1].models[0].softwareChimera
fits[1].models[0].pdb_link[]
fits[1].models[0].model_titlenull
fits[1].models[0].type_of_modelatomic
fits[1].models[0].software_versionnull
fits[1].models[0].model_datahttps://www.sasbdb.org/media/pdb_file/SASDXK4_fit2_model1.pdb
fits[1].models[0].model_mw155.6
fits[1].models[0].bead_radiusnull
fits[1].models[0].lognull
fits[1].models[0].symmetrynull
fits[1].models[0].commentnull
fits[1].models[0].user396
fits[1].fit_unit1/A
fits[1].fit_plothttps://www.sasbdb.org/media/fitting_files/scattering_plots/SASDXK4_fit2_fixed_fit_img.png
fits[1].softwareCRYSOL
fits[1].chi_square_value1.673
fits[1].p_value0.0
fits[1].fit_residual_plotSASDXK4_fit2_fitresiduals_img.png
fits[1].fit_datahttps://www.sasbdb.org/media/fitting_files/SASDXK4_fit2.fit
fits[1].fit_lognull
fits[1].software_versionnull
fits[1].description
estimated_volume_methodnull
pddf_softwareATSAS GNOM
pddf_software_versionnull
i0_calibration_standardnull
descriptionSynchrotron SAXS data from solutions of Mouse complex murine Immunoglobulin E (IgE) antibody in 20 mM Tris, 50 mM NaCl, pH 8.4 were collected on the P12 beamline at DESY (Hamburg, Germany) using a Pilatus 6M-Dectris detector at a sample-detector distance of 3.0 m and a wavelength of λ = 0.124 nm (I(s) vs s, where s = 4πsinθ/λ, and 2θ is the scattering angle). In-line size-exclusion chromatography (SEC) SAS was employed. The SEC parameters were as follows: A 50.00 μl sample at 6.0 mg/ml was injected at a 0.75 ml/min flow rate onto a GE Superdex 200 Increase 10/300 column at 15°C. 3000 successive 1.0-second frames were collected. The data were normalized to the intensity of the transmitted beam and radially averaged; the scattering of the solvent-blank was subtracted.
experiment_descriptionThe molecular weight estimate is an approximation; the actual molecular weight can vary depending on the specific glycosylation patterns and modifications of the IgE molecule. In this way, the estimated MW is approximately 200 kDa. For the model for IgE structure, we developed a hybrid model inspired by Jansen et al., 2020. This model incorporates two Fab regions (allergen excluded) from the crystallographic structure (PDB entry 7SBD), combined with an extended human Fc fragment (CH2-CH3-CH4) from PDB entry 4J4P. The hybrid model was manually fitted into a low-resolution SAXS envelope obtained by using the DAMMIF, DAMAVER, and DAMMIN programs.
tags[]
intensity_unit1/cm
experimental_mw208.0
experimental_mw_errornull
guinier_i0_mw0.021
guinier_i0_mw_error0.0
porod_mw247.0
porod_mw_errornull
pddf_i00.02141
pddf_i0_errornull
guinier_i00.0209771
guinier_i0_errornull
pddf_rg5.39
pddf_rg_errornull
guinier_rg5.193
guinier_rg_error0.031
pddf_dmax16.28
pddf_dmax_errornull
porod_volume420.0
porod_volume_errornull
estimated_volumenull
estimated_volume_errornull
guinier_point_first40
guinier_point_last80
pddf_point_firstnull
pddf_point_lastnull
i0_calibration_standard_datanull
intensities_log_log_plotSASDXK4_datloglog_img.png
symmetrynull
last_modified2025-09-17T10:13:09.722579+02:00
bragg_peak[]
manifest.json:34 个字段值
字段路径原始值
codeSASDXK4
statussuccess
started_at2026-08-11T16:43:01.868434+00:00
finished_at2026-08-11T16:43:10.861884+00:00
source_last_modified2025-09-17T10:13:09.722579+02:00
files[0].statusdownloaded
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查看完整 summary.json 原文
{
  "code": "SASDXK4",
  "status": "Published",
  "type_of_curve": "SEC-SAS",
  "angular_unit": "1/nm",
  "project": {
    "title": "Allergen-induced structural rearrangements in IgE: insights from SAXS and molecular dynamics.",
    "publication": {
      "title": "Allergen-induced structural rearrangements in IgE: insights from SAXS and molecular dynamics.",
      "author_list": "Gómez-Velasco H, García-Ramírez B, Siliqi D, Graewert MA, Quintero-Martinez A, Ortega E, Rodríguez-Romero A",
      "journal": "Int J Biol Macromol",
      "doi": "10.1016/j.ijbiomac.2025.147658",
      "pmid": "40953619",
      "published_date": "2025 Sep 13"
    },
    "status": "released",
    "submitted_date": "2025-05-07",
    "released_date": "2025-09-17"
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          "uniprot_range_first": null,
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            "short_name": null,
            "address": "Bari, Italy",
            "full_name": "CNR - Institute of Crystallography, Bari, Italy",
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  "last_modified": "2025-09-17T10:13:09.722579+02:00",
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}
查看完整 manifest.json 原文
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