Malgorzata Kwasniak
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Explore the profile of Malgorzata Kwasniak including associated specialties, affiliations and a list of published articles.
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11
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138
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Recent Articles
1.
Janska H, Kwasniak M
Front Plant Sci
. 2014 Mar;
5:79.
PMID: 24634672
The ribosome filter hypothesis posits that ribosomes are not simple non-selective translation machines but may also function as regulatory elements in protein synthesis. Recent data supporting ribosomal filtering come from...
2.
Kwasniak M, Majewski P, Skibior R, Adamowicz A, Czarna M, Sliwinska E, et al.
Plant Cell
. 2013 Jun;
25(5):1855-67.
PMID: 23723321
Hardly anything is known about translational control of plant mitochondrial gene expression. Here, we provide evidence for differential translation of mitochondrial transcripts in Arabidopsis thaliana. We found that silencing of...
3.
Janska H, Kwasniak M, Szczepanowska J
Biochim Biophys Acta
. 2012 Apr;
1833(2):381-7.
PMID: 22498346
This review focuses on organellar AAA/FtsH proteases, whose proteolytic and chaperone-like activity is a crucial component of the protein quality control systems of mitochondrial and chloroplast membranes. We compare the...
4.
Kwasniak M, Pogorzelec L, Migdal I, Smakowska E, Janska H
Physiol Plant
. 2011 Nov;
145(1):187-95.
PMID: 22085399
The existence of a proteolytic system which can specifically recognize and cleave proteins in mitochondria is now well established. The components of this system comprise processing peptidases, ATP-dependent peptidases and...
5.
Petkow-Dimitrow P, Kiec-Wilk B, Kwasniak M, Mikolajczyk M, Dembinska-Kiec A
Kardiol Pol
. 2011 Feb;
69(2):134-7.
PMID: 21332051
Background: Hypertrophic cardiomyopathy (HCM) is a genetic disease. The role of phospholamban (PLN) gene mutations is the development of HCM has not been established. Aim: To screen for PLN gene...
6.
Janska H, Piechota J, Kwasniak M
Biochim Biophys Acta
. 2010 Mar;
1797(6-7):1071-5.
PMID: 20193658
ATP-dependent proteases from three families have been identified experimentally in Arabidopsis mitochondria: four FtsH proteases (AtFtsH3, AtFtsH4, AtFtsH10, and AtFtsH11), two Lon proteases (AtLon1 and AtLon4), and one Clp protease...
7.
Kiec-Wilk B, Petkow-Dimitrow P, Kwasniak M, Dembinska-Kiec A
Kardiol Pol
. 2010 Jan;
67(12):1396-402.
PMID: 20054774
No abstract available.
8.
Jabrocka-Hybel A, Kolasinska-Kloch W, Malczewska-Malec M, Kiec-Wilk B, Kwasniak M, Kloch M, et al.
Folia Med Cracov
. 2008 Dec;
48(1-4):57-69.
PMID: 19051693
Polymorphisms of the angiotensin-converting enzyme gene and endothelial nitric oxide synthase gene have been suggested to be associated with left ventricular hypertrophy. The aim of our study was to asses...
9.
Wybranska I, Malczewska-Malec M, Partyka L, Kiec-Wilk B, Kosno K, Leszczynska-Golabek I, et al.
Clin Chem Lab Med
. 2007 Jul;
45(9):1124-32.
PMID: 17635072
Background: New tools to identify genotype-phenotype interactions need to be described and implemented. The aim of this study was to identify correlation between the risk originating from gene variation and...
10.
Malczewska-Malec M, Wybranska I, Leszczynska-Golabek I, Partyka L, Hartwich J, Jabrocka A, et al.
Clin Chem Lab Med
. 2004 Jun;
42(5):487-93.
PMID: 15202783
This study analyzes the relationship between risk factors related to overweight/obesity, insulin resistance, lipid tolerance, hypertension, endothelial function and genetic polymorphisms associated with: i) appetite regulation (leptin, melanocortin-3-receptor (MCR-3), dopamine...