Transfected Stable Cell Lines
Reliable | High-Performance | Wide Rage
Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
| Cat.No. | Product Name | Price |
|---|---|---|
| CSC-DC001619 | Panoply™ Human C10ORF2 Knockdown Stable Cell Line | Inquiry |
| CSC-SC001619 | Panoply™ Human C10ORF2 Over-expressing Stable Cell Line | Inquiry |
| Cat.No. | Product Name | Price |
|---|---|---|
| AD01997Z | Human C10orf2 adenoviral particles | Inquiry |
| LV06476L | human C10orf2 (NM_001163813) lentivirus particles | Inquiry |
| LV06477L | human C10orf2 (NM_001163812) lentivirus particles | Inquiry |
| LV06478L | human C10orf2 (NM_001163814) lentivirus particles | Inquiry |
| LV06479L | human C10orf2 (NM_021830) lentivirus particles | Inquiry |
| Cat.No. | Product Name | Price |
|---|---|---|
| SHH248670 | shRNA set against Human C10orf2 (NM_021830.4) | Inquiry |
| Cat.No. | Product Name | Price |
|---|---|---|
| CDFH002021 | Human C10orf2 cDNA Clone(NM_001163812.1) | Inquiry |
| CDFH002022 | Human C10orf2 cDNA Clone(NM_001163814.1) | Inquiry |
| CDFH002023 | Human C10orf2 cDNA Clone(NM_001163813.1) | Inquiry |
| MiUTR3H-08192 | C10ORF2 miRNA 3'UTR clone | Inquiry |
| MiUTR3H-08193 | C10ORF2 miRNA 3'UTR clone | Inquiry |
| MiUTR3H-08194 | C10ORF2 miRNA 3'UTR clone | Inquiry |
| MiUTR3H-08195 | C10ORF2 miRNA 3'UTR clone | Inquiry |
| CDCR032376 | Human C10orf2 ORF clone (NM_001163813.1) | Inquiry |
| CDCR032378 | Human C10orf2 ORF clone (NM_001163814.1) | Inquiry |
| CDCR354439 | Human C10orf2 ORF Clone(NM_001163812.1) | Inquiry |
| CDCS408732 | Human C10orf2 ORF Clone (BC033762) | Inquiry |
Recent Research Progress
Chromosome 10 open reading frame 2 (C10orf2), encodes the mitochondrial helicase Twinkle, also known as Twinkle or PEO1. The accumulation of multiple deletions in the mtDNA of affected tissues and an associated respiratory chain defect are caused by defects in C10orf2. Several studies have shown that a variety of autosomal recessive diseases are related to mutations in the C10orf2 gene. Currently, mutations in the C10orf2 gene have been documented in patients with clinical phenotypes, such as chronic progressive external ophthalmoplegia (CPEO), Parkinsonism, infantile-onset spinocerebellar ataxia (IOSCA), severe early onset encephalopathy, severe epileptic encephalopathy and mtochondrial DNA (mtDNA) depletion syndrome.
Mutations in the C10orf2 gene may lead to CPEO
CPEO is a genetic heterogeneous mitochondrial disease, usually occurring simultaneously with the characteristics of other variable diseases. It has been demonstrated that mutations in the nuclear genes involved in mtDNA replication and nucleotide metabolism may lead to CPEO, which is related to the loss of a variety of mtDNA in skeletal muscle. C10orf2 is essential for mtDNA replication, which encodes mitochondrial scintillating proteins. The Twinkle protein shows high amino acid sequence similarity with bacteriophage T7 gene 4 protein (T7 gp4), which comprises an N-terminal primase domain, a C-terminal helicase domain and an intervening linker region. More than 30 disease-causing mutations have been detected in Twinkle proteins, most of which affect the junction or helicase regions. Recent studies have shown that recessive mutations of homozygous and complex heterozygous in the helicase domain of C10orf2 gene can lead to the deletion of mtDNA. P.G655D, located in the helicase domain of C10orf2 gene, may play a role in multiple mtDNA deletions and CPEO.
Recessive mutations in C10orf2 are relevant in IOSCA
MI-Hyun Park et al. investigated the causative mutation in a Korean family with combined phenotypes of IOSCA, sensorimotor polyneuropathy, and myopathy. Compound heterozygous mutations c.1460C>T and c.1485-1G>A in C10orf2 were identified as causative of IOSCA. They found that the new complex hybrid mutation in the C10orf2 gene resulted in sensory motor polyneuropathy and myopathy IOSCA. Signs of motor neuropathy and myopathy were discovered for the first time in IOSCA patients with C10orf2 mutations. These results suggest that the clinical spectrum of IOSCA caused by C10orf2 mutations may be more variable than previously reported.
The mutation of C10orf2 may be related to PS
Perrault syndrome (PS) is a rare autosomal recessive condition characterized by deafness and gonadic dysgenesis. Recently, mutations in five genes, C10orf2, CLPP, HARS2, HSD17B4 and LARS2, have been identified as PS related. Two rare diallelic mutations in C10orf2 encode an important mitochondrial helicase Twinkle. According to the literature, mutations in C10orf2 could be correlated with PS type II with neurological symptoms (ataxia or neuropathy).
In recent years, C10orf2 has become a hot research topic, and studies have shown that the mutation of C10orf2 gene is related to many autosomal recessive diseases. Therefore, further study of C10orf2 gene is undoubtedly of great theoretical significance and potential application value to clinical diagnosis.
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