scholarly article | Q13442814 |
P2093 | author name string | Kai Wang | |
Edwin M Stone | |||
Robert F Mullins | |||
Wallace L M Alward | |||
Young H Kwon | |||
Markus H Kuehn | |||
Ben Roos | |||
John H Fingert | |||
P2860 | cites work | Optineurin links myosin VI to the Golgi complex and is involved in Golgi organization and exocytosis | Q24300284 |
Fine mapping of new glaucoma locus GLC1M and exclusion of neuregulin 2 as the causative gene | Q24647614 | ||
Heterozygous NTF4 mutations impairing neurotrophin-4 signaling in patients with primary open-angle glaucoma | Q24657994 | ||
The number of people with glaucoma worldwide in 2010 and 2020 | Q24679554 | ||
Evaluation of optineurin sequence variations in 1,048 patients with open-angle glaucoma | Q28181643 | ||
Adult-onset primary open-angle glaucoma caused by mutations in optineurin | Q28217964 | ||
Optineurin in primary open angle glaucoma | Q28240378 | ||
The multiple faces of caveolae | Q29618099 | ||
Gene expression in the trabecular meshwork and the influence of intraocular pressure | Q30928462 | ||
Characterization of gene expression in human trabecular meshwork using single-pass sequencing of 1060 clones | Q30951741 | ||
Prevalence of open-angle glaucoma among adults in the United States | Q33557283 | ||
Identification of a novel adult-onset primary open-angle glaucoma (POAG) gene on 5q22.1. | Q34389060 | ||
Identification of a gene that causes primary open angle glaucoma. | Q34414141 | ||
Distribution of WDR36 DNA sequence variants in patients with primary open-angle glaucoma | Q34530332 | ||
A Glaucoma Case-control Study of the WDR36 Gene D658G sequence variant | Q34552347 | ||
Common variants near CAV1 and CAV2 are associated with primary open-angle glaucoma | Q35569618 | ||
Immunohistochemical study of caveolin-1 and -2 in the rat retina | Q35622303 | ||
Glaucoma genetics | Q37303762 | ||
Vascular permeability and pathological angiogenesis in caveolin-1-null mice | Q37362134 | ||
Different caveolin isoforms in the retina of melanoma malignum affected human eye. | Q37414522 | ||
Prevalence of open-angle glaucoma in Iceland: Reykjavik Eye Study. | Q50724358 | ||
Clinical features associated with mutations in the chromosome 1 open-angle glaucoma gene (GLC1A) | Q53956831 | ||
No Association Between Variations in the WDR36 Gene and Primary Open-Angle Glaucoma | Q57252108 | ||
Evidence for a novel glaucoma locus at chromosome 3p21-22 | Q57252145 | ||
Primary open-angle glaucoma | Q57728691 | ||
Isolation of DNA from biological specimens without extraction with phenol | Q70044147 | ||
Pseudoexfoliation, intraocular pressure, and senile lens changes in a population-based survey | Q70392676 | ||
Exfoliation syndrome | Q73413239 | ||
A genome-wide scan maps a novel juvenile-onset primary open-angle glaucoma locus to 15q | Q79377775 | ||
P304 | page(s) | 430-435 | |
P577 | publication date | 2011-02-08 | |
P1433 | published in | Molecular Vision | Q6895981 |
P1476 | title | Chromosome 7q31 POAG locus: ocular expression of caveolins and lack of association with POAG in a US cohort | |
P478 | volume | 17 |
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Q26774468 | An Updated Review on the Genetics of Primary Open Angle Glaucoma |
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Q38963501 | Caveolins and caveolae in ocular physiology and pathophysiology. |
Q28731370 | Common variants in CDKN2B-AS1 associated with optic-nerve vulnerability of glaucoma identified by genome-wide association studies in Japanese |
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Q36594331 | Effects of polymorphisms in vitamin E-, vitamin C-, and glutathione peroxidase-related genes on serum biomarkers and associations with glaucoma. |
Q37000810 | Ethnic specific association of the CAV1/CAV2 locus with primary open-angle glaucoma |
Q35576527 | Expression of caveolin in trabecular meshwork cells and its possible implication in pathogenesis of primary open angle glaucoma |
Q35605650 | Expression-associated polymorphisms of CAV1-CAV2 affect intraocular pressure and high-tension glaucoma risk |
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Q52314492 | Glaucoma pathogenesis and neurotrophins: Focus on the Molecular and Genetic basis for Therapeutic prospects. |
Q34473805 | Induction of trabecular meshwork cells from induced pluripotent stem cells |
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