28679-1-AP
antibody from Proteintech Group
Targeting: SAMM50
CGI-51, OMP85, SAM50, TOB55, TRG-3, YNL026W
Antibody data
- Antibody Data
- Antigen structure
- References [9]
- Comments [0]
- Validations [0]
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Validation data
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- Product number
- 28679-1-AP - Provider product page

- Provider
- Proteintech Group
- Product name
- Sam50 antibody
- Antibody type
- Polyclonal
- Description
- Sam50 antibody (Cat. #28679-1-AP) is a rabbit polyclonal antibody that shows reactivity with Human, Mouse, Rat and has been validated for the following applications: IF, IHC, WB,ELISA.
- Reactivity
- Human, Mouse, Rat
- Host
- Rabbit
- Conjugate
- Unconjugated
- Isotype
- IgG
- Vial size
- 20ul, 150ul
Submitted references Heart-Specific and Conditional Deletion of the Immt Gene Reveals Its Role in Regulating Mitochondrial Structure and Total Heart Metabolism.
UBQLN1 Inhibition reduces MASH progression through downregulating SIKE/p38 MAPK pathway in hepatocyte.
Mitochondrial CCN1 drives ferroptosis via fatty acid β-oxidation.
Mitochondrial damage is associated with an early immune response in inclusion body myositis.
Regulation of mitochondrial cristae organization by Myo19, Miro1 and Miro2, and metaxin 3.
Loss of MTX2 causes mitochondrial dysfunction, podocyte injury, nephrotic proteinuria and glomerulopathy in mice and patients.
N-Myristoytransferase Inhibition Causes Mitochondrial Iron Overload and Parthanatos in TIM17A-Dependent Aggressive Lung Carcinoma.
Mitochondrial outer membrane protein Samm50 protects against hypoxia-induced cardiac injury by interacting with Shmt2.
Samm50 Promotes Hypertrophy by Regulating Pink1-Dependent Mitophagy Signaling in Neonatal Cardiomyocytes.
Kuwabara Y, Keezer C, Lin SJ, Rajput A, Molkentin JD
Cells 2026 Mar 12;15(6)
Cells 2026 Mar 12;15(6)
UBQLN1 Inhibition reduces MASH progression through downregulating SIKE/p38 MAPK pathway in hepatocyte.
Chen Y, Yang F, Zheng G, Wang Y, Liu L, Yan Y
Journal of nanobiotechnology 2026 Mar 11;24(1)
Journal of nanobiotechnology 2026 Mar 11;24(1)
Mitochondrial CCN1 drives ferroptosis via fatty acid β-oxidation.
Guo W, Zhang C, Zhou Q, Chen T, Xu X, Zhang J, Yu X, Wu H, Zhang X, Ma L, Qian K, Klionsky DJ, Kang R, Kroemer G, Yu Y, Tang D, Wang J
Developmental cell 2025 Sep 8;60(17):2294-2312.e11
Developmental cell 2025 Sep 8;60(17):2294-2312.e11
Mitochondrial damage is associated with an early immune response in inclusion body myositis.
Kleefeld F, Cross E, Lagos D, Walli S, Schoser B, Hentschel A, Ruck T, Nelke C, Hahn K, Hathazi D, Mammen AL, Casal-Dominguez M, Gut M, Gut IG, Heath S, Schänzer A, Goebel HH, Pinal-Fernandez I, Roos A, Preuße C, Stenzel W, Horvath R
Brain : a journal of neurology 2025 Sep 3;148(9):3199-3214
Brain : a journal of neurology 2025 Sep 3;148(9):3199-3214
Regulation of mitochondrial cristae organization by Myo19, Miro1 and Miro2, and metaxin 3.
Shembekar SS, Nikolaus P, Honnert U, Höring M, Attia A, Topp K, Lohmann B, Liebisch G, Bähler M
Journal of cell science 2025 May 1;138(9)
Journal of cell science 2025 May 1;138(9)
Loss of MTX2 causes mitochondrial dysfunction, podocyte injury, nephrotic proteinuria and glomerulopathy in mice and patients.
Li T, Bao Y, Xia Y, Meng H, Zhou C, Huang L, Wang X, Lai EY, Jiang P, Mao J
International journal of biological sciences 2024;20(3):937-952
International journal of biological sciences 2024;20(3):937-952
N-Myristoytransferase Inhibition Causes Mitochondrial Iron Overload and Parthanatos in TIM17A-Dependent Aggressive Lung Carcinoma.
Geroyska S, Mejia I, Chan AA, Navarrete M, Pandey V, Kharpatin S, Noguti J, Wang F, Srole D, Chou TF, Wohlschlegel J, Nemeth E, Damoiseaux R, Shackelford DB, Lee DJ, Díaz B
Cancer research communications 2024 Jul 1;4(7):1815-1833
Cancer research communications 2024 Jul 1;4(7):1815-1833
Mitochondrial outer membrane protein Samm50 protects against hypoxia-induced cardiac injury by interacting with Shmt2.
Zhou Y, Kang L, Xu R, Zhao D, Wang J, Wu J, Lin H, Ding Z, Zou Y
Cellular signalling 2024 Aug;120:111219
Cellular signalling 2024 Aug;120:111219
Samm50 Promotes Hypertrophy by Regulating Pink1-Dependent Mitophagy Signaling in Neonatal Cardiomyocytes.
Xu R, Kang L, Wei S, Yang C, Fu Y, Ding Z, Zou Y
Frontiers in cardiovascular medicine 2021;8:748156
Frontiers in cardiovascular medicine 2021;8:748156
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