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Browse result for Retinal dystrophy

※ introduction

    Retinitis pigmentosa (RP) is a genetic disorder of the eyes that causes loss of vision. Symptoms include trouble seeing at night and decreasing peripheral vision (side and upper or lower visual field). As peripheral vision worsens, people may experience "tunnel vision". Complete blindness is uncommon. Onset of symptoms is generally gradual and often begins in childhood. Retinitis pigmentosa is generally inherited from one or both parents. It is caused by genetic variants in nearly 100 genes. The underlying mechanism involves the progressive loss of rod photoreceptor cells that line the retina of the eyeball. The rod cells secrete a neuroprotective substance (Rod-derived cone viability factor, RdCVF) that protects the cone cells from apoptosis (cell death). However, when the rod cells die, this substance is no longer provided. This is generally followed by the loss of cone photoreceptor cells. Diagnosis is by eye examination of the retina finding dark pigment deposits caused by the rupture of the underlying retinal pigmented epithelial cells, given that these cells contain a pigment known as melanin. Other supportive testing may include the electroretinogram (ERG), visual field testing (VFT), ocular coherence tomography (OCT) and DNA testing to determine the gene responsible for a person's particular type of RP (now called Inherited Retinal Dystrophy (IRD)). There is currently no cure for retinitis pigmentosa. Efforts to manage the problem may include the use of low vision aids, portable lighting, or orientation and mobility training. Vitamin A palmitate supplements may be useful to slow worsening. A visual prosthesis may be an option in certain people with severe disease. Currently there is only one FDA-approved gene therapy that is commercially available to RP patients with Leber congenital amaurosis type 2. It replaces the miscoded RPE65 protein that is produced within the retinal pigmented epithelium. It has been found to effectively work in about 50% of the patients who receive the therapy. The earlier the child receives the RPE65 therapy the better the chances for a positive outcome. There are many other therapies being researched at this time with the goal of being approved in the next few years. It is estimated to affect 1 in 4,000 people.

Reference
Wiki: Retinal dystrophy



PTMD IDUniProt AccessionEntrez IDGene NameProtein NameOrganism
PTMD01039O434908842
PROM1
Prominin-1
Homo sapiens
PTMD01044O751974041
LRP5
Low-density lipoprotein receptor-related protein 5
Homo sapiens
PTMD00550P193673098
HK1
Hexokinase-1
Homo sapiens
PTMD00970P527323832
KIF11
Kinesin-like protein KIF11
Homo sapiens
PTMD00624P608915631
PRPS1
Ribose-phosphate pyrophosphokinase 1
Homo sapiens
PTMD01423O433959129
PRPF3
U4/U6 small nuclear ribonucleoprotein Prp3
Homo sapiens
PTMD01601P352211495
CTNNA1
Catenin alpha-1
Homo sapiens
PTMD01107P548454901
NRL
Neural retina-specific leucine zipper protein
Homo sapiens
PTMD01123Q1286610461
MERTK
Tyrosine-protein kinase Mer
Homo sapiens
PTMD02279O002947287
TULP1
Tubby-related protein 1
Homo sapiens
PTMD02614O155376247
RS1
Retinoschisin
Homo sapiens
PTMD02642O431861406
CRX
Cone-rod homeobox protein
Homo sapiens
PTMD02786O43822755
CFAP410
Cilia- and flagella-associated protein 410
Homo sapiens
PTMD02854O603134976
OPA1
Dynamin-like GTPase OPA1, mitochondrial [Cleaved into: Dynamin-like GTPase OPA1, long form ; Dynamin-like GTPase OPA1, short form ]
Homo sapiens
PTMD03094O754457399
USH2A
Usherin
Homo sapiens
PTMD03155O7564323020
SNRNP200
U5 small nuclear ribonucleoprotein 200 kDa helicase
Homo sapiens
PTMD03158O756658481
OFD1
Centriole and centriolar satellite protein OFD1
Homo sapiens
PTMD03168O756956102
RP2
Protein XRP2
Homo sapiens
PTMD03261O760907439
BEST1
Bestrophin-1
Homo sapiens
PTMD03312O9490624148
PRPF6
Pre-mRNA-processing factor 6
Homo sapiens
PTMD03858P081006010
RHO
Rhodopsin
Homo sapiens
PTMD04031P105236295
SAG
S-arrestin
Homo sapiens
PTMD04103P120813035
HARS1
Histidine--tRNA ligase, cytoplasmic
Homo sapiens
PTMD04281P164995145
PDE6A
Rod cGMP-specific 3',5'-cyclic phosphodiesterase subunit alpha
Homo sapiens
PTMD04445P207944117
MAK
Serine/threonine-protein kinase MAK
Homo sapiens
PTMD04452P208393614
IMPDH1
Inosine-5'-monophosphate dehydrogenase 1
Homo sapiens
PTMD04598P243861121
CHM
Rab proteins geranylgeranyltransferase component A 1
Homo sapiens
PTMD05685P567156101
RP1
Oxygen-regulated protein 1
Homo sapiens
PTMD05952P7836324
ABCA4
Retinal-specific phospholipid-transporting ATPase ABCA4
Homo sapiens
PTMD06498Q132861201
CLN3
Battenin
Homo sapiens
PTMD07090Q165186121
RPE65
Retinoid isomerohydrolase
Homo sapiens
PTMD07351Q3SYG427241
BBS9
Protein PTHB1
Homo sapiens
PTMD07616Q5JTW284131
CEP78
Centrosomal protein of 78 kDa
Homo sapiens
PTMD07996Q68CZ123322
RPGRIP1L
Protein fantom
Homo sapiens
PTMD08240Q6P2Q910594
PRPF8
Pre-mRNA-processing-splicing factor 8
Homo sapiens
PTMD09387Q8IXQ555975
KLHL7
Kelch-like protein 7
Homo sapiens
PTMD09401Q8IY1710908
PNPLA6
Patatin-like phospholipase domain-containing protein 6
Homo sapiens
PTMD09564Q8N15754806
AHI1
Jouberin
Homo sapiens
PTMD10014Q8NDL960509
AGBL5
Cytosolic carboxypeptidase-like protein 5
Homo sapiens
PTMD10015Q8NDN955213
RCBTB1
RCC1 and BTB domain-containing protein 1
Homo sapiens
PTMD10346Q8TCU47840
ALMS1
Centrosome-associated protein ALMS1
Homo sapiens
PTMD10627Q8WWY326121
PRPF31
U4/U6 small nuclear ribonucleoprotein Prp31
Homo sapiens
PTMD11689Q96QP180216
ALPK1
Alpha-protein kinase 1
Homo sapiens
PTMD11730Q96RY79742
IFT140
Intraflagellar transport protein 140 homolog
Homo sapiens
PTMD12279Q9BXC9583
BBS2
Bardet-Biedl syndrome 2 protein
Homo sapiens
PTMD12390Q9BZ7183394
PITPNM3
Membrane-associated phosphatidylinositol transfer protein 3
Homo sapiens
PTMD12433Q9BZV350939
IMPG2
Interphotoreceptor matrix proteoglycan 2
Homo sapiens
PTMD13316Q9NQW854714
CNGB3
Cyclic nucleotide-gated channel beta-3
Homo sapiens
PTMD13394Q9NRR656623
INPP5E
Phosphatidylinositol polyphosphate 5-phosphatase type IV
Homo sapiens
PTMD13422Q9NS5610210
TOPORS
E3 ubiquitin-protein ligase Topors
Homo sapiens