Details of Protein
| General Information of Protein (ID: PRT00833) | |||||
|---|---|---|---|---|---|
| Name | Lamin-B2 (LMNB2) | ||||
| Synonyms |
Click to Show/Hide Synonyms of This Protein
LMNB2; LMN2
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| Gene Name | LMNB2 | Gene ID | |||
| UniProt ID | |||||
| Family | Intermediate filament (InFi) | ||||
| Click to Show/Hide the Molecular/Functional Data (Sequence/Structure/Function) of This Protein | |||||
| Sequence |
MSPPSPGRRREQRRPRAAATMATPLPGRAGGPATPLSPTRLSRLQEKEELRELNDRLAHY
IDRVRALELENDRLLLKISEKEEVTTREVSGIKALYESELADARRVLDETARERARLQIE IGKLRAELDEVNKSAKKREGELTVAQGRVKDLESLFHRSEVELAAALSDKRGLESDVAEL RAQLAKAEDGHAVAKKQLEKETLMRVDLENRCQSLQEELDFRKSVFEEEVRETRRRHERR LVEVDSSRQQEYDFKMAQALEELRSQHDEQVRLYKLELEQTYQAKLDSAKLSSDQNDKAA SAAREELKEARMRLESLSYQLSGLQKQASAAEDRIRELEEAMAGERDKFRKMLDAKEQEM TEMRDVMQQQLAEYQELLDVKLALDMEINAYRKLLEGEEERLKLSPSPSSRVTVSRATSS SSGSLSATGRLGRSKRKRLEVEEPLGSGPSVLGTGTGGSGGFHLAQQASASGSVSIEEID LEGKFVQLKNNSDKDQSLGNWRIKRQVLEGEEIAYKFTPKYILRAGQMVTVWAAGAGVAH SPPSTLVWKGQSSWGTGESFRTVLVNADGEEVAMRTVKKSSVMRENENGEEEEEEAEFGE EDLFHQQGDPRTTSRGCYVM |
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| Structure | |||||
| Function | Lamins are components of the nuclear lamina, a fibrous layer on the nucleoplasmic side of the inner nuclear membrane, which is thought to provide a framework for the nuclear envelope and may also interact with chromatin. | ||||
| Regulatory Network | |||||
| Full List of Metabolite(s) Regulating This Protein | ||||||
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| Organic acids and derivatives | ||||||
| Arginine | Click to Show/Hide the Full List of Regulating Pair(s): 1 Pair(s) | |||||
| Detailed Information |
Metabo Info
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| Regulating Pair |
Experim Info
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[1] | ||||
| Introduced Variation | Arginine decrease (48 hours) | |||||
| Induced Change | LMNB2 protein abundance levels: increase | |||||
| Summary | Introduced Variation
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| Disease Status | Brain cancer [ICD-11: 2A00] | |||||
| Details | It is reported that arginine decrease causes the increase of LMNB2 protein abundance compared with control group. | |||||
| References | |||||
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| 1 | Combinatory Treatment of Canavanine and Arginine Deprivation Efficiently Targets Human Glioblastoma Cells via Pleiotropic Mechanisms. Cells. 2020 Sep 30;9(10):2217. | ||||
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