1
|
Guidelines for the use and interpretation of assays for monitoring autophagy.
|
Autophagy
|
2012
|
20.08
|
2
|
Autophagy influences glomerular disease susceptibility and maintains podocyte homeostasis in aging mice.
|
J Clin Invest
|
2010
|
3.44
|
3
|
AKT2 is essential to maintain podocyte viability and function during chronic kidney disease.
|
Nat Med
|
2013
|
3.41
|
4
|
Role of mTOR in podocyte function and diabetic nephropathy in humans and mice.
|
J Clin Invest
|
2011
|
2.90
|
5
|
FAN1 mutations cause karyomegalic interstitial nephritis, linking chronic kidney failure to defective DNA damage repair.
|
Nat Genet
|
2012
|
2.74
|
6
|
mTORC1 activation in podocytes is a critical step in the development of diabetic nephropathy in mice.
|
J Clin Invest
|
2011
|
2.72
|
7
|
Rip1 (receptor-interacting protein kinase 1) mediates necroptosis and contributes to renal ischemia/reperfusion injury.
|
Kidney Int
|
2012
|
2.55
|
8
|
A dynamic network model of mTOR signaling reveals TSC-independent mTORC2 regulation.
|
Sci Signal
|
2012
|
2.36
|
9
|
Podocytes use FcRn to clear IgG from the glomerular basement membrane.
|
Proc Natl Acad Sci U S A
|
2008
|
2.12
|
10
|
Trafficking of TRPP2 by PACS proteins represents a novel mechanism of ion channel regulation.
|
EMBO J
|
2005
|
2.12
|
11
|
Proteinuria impairs podocyte regeneration by sequestering retinoic acid.
|
J Am Soc Nephrol
|
2013
|
2.09
|
12
|
Prorenin receptor is essential for podocyte autophagy and survival.
|
J Am Soc Nephrol
|
2011
|
2.04
|
13
|
NEPH1 defines a novel family of podocin interacting proteins.
|
FASEB J
|
2002
|
1.85
|
14
|
Anthracyclines induce DNA damage response-mediated protection against severe sepsis.
|
Immunity
|
2013
|
1.83
|
15
|
Homodimerization and heterodimerization of the glomerular podocyte proteins nephrin and NEPH1.
|
J Am Soc Nephrol
|
2003
|
1.83
|
16
|
Scribble participates in Hippo signaling and is required for normal zebrafish pronephros development.
|
Proc Natl Acad Sci U S A
|
2009
|
1.57
|
17
|
Molecular fingerprinting of the podocyte reveals novel gene and protein regulatory networks.
|
Kidney Int
|
2013
|
1.55
|
18
|
CD2AP in mouse and human podocytes controls a proteolytic program that regulates cytoskeletal structure and cellular survival.
|
J Clin Invest
|
2011
|
1.49
|
19
|
Albumin-associated free fatty acids induce macropinocytosis in podocytes.
|
J Clin Invest
|
2015
|
1.46
|
20
|
Autophagy plays a critical role in kidney tubule maintenance, aging and ischemia-reperfusion injury.
|
Autophagy
|
2012
|
1.44
|
21
|
Neph-Nephrin proteins bind the Par3-Par6-atypical protein kinase C (aPKC) complex to regulate podocyte cell polarity.
|
J Biol Chem
|
2008
|
1.43
|
22
|
mTORC2 critically regulates renal potassium handling.
|
J Clin Invest
|
2016
|
1.40
|
23
|
KIBRA modulates directional migration of podocytes.
|
J Am Soc Nephrol
|
2008
|
1.36
|
24
|
Unraveling the role of podocyte turnover in glomerular aging and injury.
|
J Am Soc Nephrol
|
2014
|
1.36
|
25
|
Phosphorylation by casein kinase 2 induces PACS-1 binding of nephrocystin and targeting to cilia.
|
EMBO J
|
2005
|
1.35
|
26
|
ANKS6 is a central component of a nephronophthisis module linking NEK8 to INVS and NPHP3.
|
Nat Genet
|
2013
|
1.32
|
27
|
Identification of a novel inhibitory actin-capping protein binding motif in CD2-associated protein.
|
J Biol Chem
|
2006
|
1.23
|
28
|
Thrombospondin type-1 domain-containing 7A in idiopathic membranous nephropathy.
|
N Engl J Med
|
2015
|
1.17
|
29
|
CD2-associated protein (CD2AP) expression in podocytes rescues lethality of CD2AP deficiency.
|
J Biol Chem
|
2005
|
1.15
|
30
|
The podocyte slit diaphragm--from a thin grey line to a complex signalling hub.
|
Nat Rev Nephrol
|
2013
|
1.12
|
31
|
How many ways can a podocyte die?
|
Semin Nephrol
|
2012
|
1.12
|
32
|
Vps34 deficiency reveals the importance of endocytosis for podocyte homeostasis.
|
J Am Soc Nephrol
|
2013
|
1.09
|
33
|
Implications of autophagy for glomerular aging and disease.
|
Cell Tissue Res
|
2011
|
1.05
|
34
|
A model organism approach: defining the role of Neph proteins as regulators of neuron and kidney morphogenesis.
|
Hum Mol Genet
|
2010
|
1.05
|
35
|
mTOR controls kidney epithelia in health and disease.
|
Nephrol Dial Transplant
|
2014
|
1.00
|
36
|
Expression and function of C/EBP homology protein (GADD153) in podocytes.
|
Am J Pathol
|
2006
|
0.97
|
37
|
Podocyte polarity signalling.
|
Curr Opin Nephrol Hypertens
|
2009
|
0.93
|
38
|
New players in the pathogenesis of focal segmental glomerulosclerosis.
|
Nephrol Dial Transplant
|
2012
|
0.93
|
39
|
Mammalian target of rapamycin signaling in the podocyte.
|
Curr Opin Nephrol Hypertens
|
2012
|
0.93
|
40
|
Cell loss and autophagy in the extra-adrenal chromaffin organ of Zuckerkandl are regulated by glucocorticoid signalling.
|
J Neuroendocrinol
|
2013
|
0.91
|
41
|
Endothelial cell and podocyte autophagy synergistically protect from diabetes-induced glomerulosclerosis.
|
Autophagy
|
2015
|
0.90
|
42
|
Role of the polarity protein Scribble for podocyte differentiation and maintenance.
|
PLoS One
|
2012
|
0.90
|
43
|
N-wasp is required for stabilization of podocyte foot processes.
|
J Am Soc Nephrol
|
2013
|
0.87
|
44
|
Podocyte regeneration: who can become a podocyte?
|
Am J Pathol
|
2013
|
0.87
|
45
|
Stra13, a prostaglandin E2-induced gene, regulates the cellular redox state of podocytes.
|
FASEB J
|
2003
|
0.87
|
46
|
Podocyte-specific GLUT4-deficient mice have fewer and larger podocytes and are protected from diabetic nephropathy.
|
Diabetes
|
2013
|
0.87
|
47
|
An update on ABO-incompatible kidney transplantation.
|
Transpl Int
|
2014
|
0.86
|
48
|
Flying podocytes.
|
Kidney Int
|
2009
|
0.85
|
49
|
Immunosuppression for membranous nephropathy.
|
Lancet
|
2013
|
0.85
|
50
|
aPKCλ/ι and aPKCζ contribute to podocyte differentiation and glomerular maturation.
|
J Am Soc Nephrol
|
2013
|
0.85
|
51
|
Mutations of the SLIT2-ROBO2 pathway genes SLIT2 and SRGAP1 confer risk for congenital anomalies of the kidney and urinary tract.
|
Hum Genet
|
2015
|
0.84
|
52
|
GSK3β inactivation in podocytes results in decreased phosphorylation of p70S6K accompanied by cytoskeletal rearrangements and inhibited motility.
|
Am J Physiol Renal Physiol
|
2011
|
0.83
|
53
|
Zona occludens proteins modulate podosome formation and function.
|
FASEB J
|
2010
|
0.82
|
54
|
A novel domain regulating degradation of the glomerular slit diaphragm protein podocin in cell culture systems.
|
PLoS One
|
2013
|
0.81
|
55
|
Functional and spatial analysis of C. elegans SYG-1 and SYG-2, orthologs of the Neph/nephrin cell adhesion module directing selective synaptogenesis.
|
PLoS One
|
2011
|
0.80
|
56
|
The class III phosphatidylinositol 3-kinase PIK3C3/VPS34 regulates endocytosis and autophagosome-autolysosome formation in podocytes.
|
Autophagy
|
2013
|
0.78
|
57
|
Chromatin dynamics in kidney development and function.
|
Cell Tissue Res
|
2014
|
0.78
|
58
|
Functional study of mammalian Neph proteins in Drosophila melanogaster.
|
PLoS One
|
2012
|
0.78
|
59
|
Def-6, a novel regulator of small GTPases in podocytes, acts downstream of atypical protein kinase C (aPKC) λ/ι.
|
Am J Pathol
|
2013
|
0.78
|
60
|
Signaling at the slit: podocytes chat by synaptic transmission.
|
J Am Soc Nephrol
|
2009
|
0.76
|
61
|
Local TNF causes NFATc1-dependent cholesterol-mediated podocyte injury.
|
J Clin Invest
|
2016
|
0.76
|
62
|
Molecular understanding of the slit diaphragm.
|
Pediatr Nephrol
|
2012
|
0.76
|
63
|
The BAR domain protein PICK1 regulates cell recognition and morphogenesis by interacting with Neph proteins.
|
Mol Cell Biol
|
2011
|
0.75
|
64
|
Old friends form alliance against podocytes.
|
Kidney Int
|
2011
|
0.75
|
65
|
A brief overview on IRM function across evolution.
|
J Neurogenet
|
2014
|
0.75
|
66
|
The long journey through renal filtration: new pieces in the puzzle of slit diaphragm architecture.
|
Curr Opin Nephrol Hypertens
|
2017
|
0.75
|
67
|
Is podocyte research at a tipping point? Report from the 9(th) International Podocyte Conference.
|
Kidney Int
|
2012
|
0.75
|