scholarly article | Q13442814 |
P2093 | author name string | Feng Chen | |
Liang Ma | |||
Yinqiu Wang | |||
Qiusha Guo | |||
Piyush Tripathi | |||
Matthew Coussens | |||
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A new logic for DNA engineering using recombination in Escherichia coli | Q29615202 | ||
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The development of the bladder trigone, the center of the anti-reflux mechanism | Q34690893 | ||
Deciphering the renal code: advances in conditional gene targeting | Q35894395 | ||
The cellular basis of kidney development | Q36527712 | ||
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A CamKIIalpha iCre BAC allows brain-specific gene inactivation. | Q38295532 | ||
A myocardial lineage derives from Tbx18 epicardial cells | Q41213731 | ||
T-genes and limb bud development. | Q52018150 | ||
Conditional targeting in the kidney | Q80685196 | ||
P433 | issue | 6 | |
P304 | page(s) | 409-413 | |
P577 | publication date | 2009-06-01 | |
P1433 | published in | Genesis | Q5532784 |
P1476 | title | Cre/lox recombination in the lower urinary tract | |
P478 | volume | 47 |
Q33923145 | A distant downstream enhancer directs essential expression of Tbx18 in urogenital tissues. |
Q35853268 | Absence of canonical Smad signaling in ureteral and bladder mesenchyme causes ureteropelvic junction obstruction |
Q90805589 | An extended regulatory landscape drives Tbx18 activity in a variety of prostate-associated cell lineages |
Q50433691 | BMP4 uses several different effector pathways to regulate proliferation and differentiation in the epithelial and mesenchymal tissue compartments of the developing mouse ureter |
Q35202948 | Cell death serves as a single etiological cause of a wide spectrum of congenital urinary tract defects |
Q34586605 | Deletion of fibroblast growth factor receptor 2 from the peri-wolffian duct stroma leads to ureteric induction abnormalities and vesicoureteral reflux |
Q43981145 | Epigenetic regulation of Tbx18 gene expression during endochondral bone formation |
Q35437021 | Fgfr2 is integral for bladder mesenchyme patterning and function |
Q52932444 | Fgfr2 is integral for bladder mesenchyme patterning and function. |
Q34469453 | Identification of a multipotent self-renewing stromal progenitor population during mammalian kidney organogenesis |
Q88296636 | Ift25 is not a cystic kidney disease gene but is required for early steps of kidney development |
Q89518993 | Increased rates of vesicoureteral reflux in mice from deletion of Dicer in the peri-Wolffian duct stroma |
Q47405134 | Loss of peri-Wolffian duct stromal Frs2α expression in mice leads to abnormal ureteric bud induction and vesicoureteral reflux |
Q27000375 | Lower urinary tract development and disease |
Q92565699 | Manipulating the Mouse Genome Using Recombineering |
Q40013118 | Midline signaling regulates kidney positioning but not nephrogenesis through Shh. |
Q27011305 | Pancreas-specific Cre driver lines and considerations for their prudent use |
Q50048221 | Protein Kinase 2β Is Expressed in Neural Crest-Derived Urinary Pacemaker Cells and Required for Pyeloureteric Contraction |
Q33556357 | Role of fibroblast growth factor receptor signaling in kidney development |
Q84196885 | Role of fibroblast growth factor receptor signaling in kidney development |
Q35225701 | Smad4 regulates ureteral smooth muscle cell differentiation during mouse embryogenesis |
Q27312119 | Tbx18 Regulates the Differentiation of Periductal Smooth Muscle Stroma and the Maintenance of Epithelial Integrity in the Prostate |
Q50743818 | Tbx18 expression demarcates multipotent precursor populations in the developing urogenital system but is exclusively required within the ureteric mesenchymal lineage to suppress a renal stromal fate. |
Q34364718 | The hedgehog signal induced modulation of bone morphogenetic protein signaling: an essential signaling relay for urinary tract morphogenesis. |
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