| Literature DB >> 32650483 |
Keemo Delos Santos1, Eunjeong Kwon2, Nam-Sung Moon1.
Abstract
While a plethora of genetic techniques have been developed over the past century, modifying specific sequences of the fruit fly genome has been a difficult, if not impossible task. clustered regularly interspaced short palindromic repeat (CRISPR)/Cas9 truly redefined molecular genetics and provided new tools to model human diseases in Drosophila melanogaster. This is particularly true for genes whose protein sequences are highly conserved. Phosphoribosyl pyrophosphate synthetase (PRPS) is a rate-limiting enzyme in nucleotide metabolism whose missense mutations are found in several neurological disorders, including Arts syndrome. In addition, PRPS is deregulated in cancer, particularly those that become resistant to cancer therapy. Notably, Drosophila PRPS shares about 90% protein sequence identity with its human orthologs, making it an ideal gene to study via CRISPR/Cas9. In this review, we will summarize recent findings on PRPS mutations in human diseases including cancer and on the molecular mechanisms by which PRPS activity is regulated. We will also discuss potential applications of Drosophila CRISPR/Cas9 to model PRPS-dependent disorders and other metabolic diseases that are associated with nucleotide metabolism.Entities:
Keywords: Drosophila CRISPR; PRPS-associated disease; metabolic disorders; neurological disorders
Mesh:
Substances:
Year: 2020 PMID: 32650483 PMCID: PMC7403961 DOI: 10.3390/ijms21144824
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Missense mutations identified in phosphoribosyl pyrophosphate synthetase 1 (PRPS1) associated with PRPS1-associated neurological disorders.
| Disorder | Effect on | Mutation | Amino Acid Change |
|---|---|---|---|
| Gain of Function | 154G > C [ | D52H | |
| 341A > G [ | N114S | ||
| 385C > A [ | L129I | ||
| 521G > T [ | G174V | ||
| 547G > C [ | D183H 1 | ||
| 569C > T [ | A190V 1 | ||
| 578A > T [ | H192L | ||
| 579C > G [ | H193Q 1 | ||
| Nonsyndromic X-linked sensorineural deafness (DFN2) | Loss of Function | 193G > A [ | D65N |
| 259G > A [ | A87T | ||
| 869T > C [ | I290T | ||
| 916G > A [ | G306R | ||
| Charcot-Marie-Tooth neuropathy type 5 (CMTX5) | Loss of Function | 129A > C [ | E43D |
| 334G > C [ | V112L | ||
| 344T > C [ | M115T | ||
| Arts syndrome | Loss of Function | 398A > C [ | Q133P |
| 455T > C [ | L152P | ||
| 856C > T [ | R196W | ||
| Loss of Function | 424G > C [ | V142L | |
| CMTX5 and Arts syndrome | Loss of Function | 830A > C [ | Q277P |
| DFN2 and CMTX5 | Loss of Function | 337G > T [ | All3S |
| DFN2 and CMTX6 | Loss of Function | 343A > G [ | M115V |
| DFN2 and CMTX7 | Loss of Function | 925G > T [ | V309F |
| DFN2 and CMTX8 | Loss of Function | 62C > G [ | A121G |
| Retinal Dystrophy | Loss of Function | 46T > C [ | S16P |
| 47C > T [ | S16F | ||
| 586C > T [ | R196W | ||
| 640C > T [ | R214W | ||
| 641G > C [ | R214P |
Amino acid number adjusted based on UNIPROT data.
Missense mutations of PRPS identified in human cancer.
| Cancer Type | Gene | Amino Acid Change |
|---|---|---|
| Relapse-specific ALL |
| V53A [ |
| I72V [ | ||
| C77S [ | ||
| S103I [ | ||
| S103N [ | ||
| S103T [ | ||
| S103R [ | ||
| N114D [ | ||
| D139G [ | ||
| N144S [ | ||
| G174E [ | ||
| K176N [ | ||
| R177S [ | ||
| D183E [ | ||
| A190V [ | ||
| A190T [ | ||
| L191F [ | ||
| T303S [ | ||
| Y311C [ | ||
| V316L [ | ||
|
| V48M [ | |
| S120S [ | ||
| A134T [ | ||
| P173Y [ | ||
| A175T [ | ||
| Breast Cancer |
| D203H [ |
| V219G [ | ||
| Colorectal Cancer |
| H231D [ |
Genes causing inborn errors in purine metabolism.
| Gene | ensID | Gene Name | Drosophila Homologues | FB ID | Homology between Human and Fruit Fly Orthologs |
|---|---|---|---|---|---|
|
| ENSG00000239900 | adenylosuccinate lyase ( |
| FBgn0038467 | Identity: 65.6% |
| Similarity: 78.7% | |||||
|
| ENSG00000138363 | 5-aminoimidazole-4-carboxamide ribonucleotide formyltransferase/IMP cyclohydrolase ( |
| FBgn0039241 | Identity: 70.6% |
| Similarity: 83.3% | |||||
|
| ENSG00000198805 | purine nucleoside phosphorylase (Catabolism) |
| FBgn0035348 | Identity: 44.6% |
| Similarity: 59.8% | |||||
|
| ENSG00000196839 | adenosine deaminase (Catabolism) |
| FBgn0037661 | Identity: 23.7% |
| Similarity: 38.8% | |||||
|
| ENSG00000198931 | adenine phosphoribosyltransferase (Salvage) |
| FBgn0000109 | Identity: 44.3% |
| Similarity: 62.7% | |||||
|
| ENSG00000165704 | hypoxanthine phosphoribosyltransferase 1 (Salvage) |
| - | - |
Selected genes associated with inborn error in purine metabolism and their Drosophila orthologs are shown. Protein sequence homology is determined by an alignment tool from EMBL-EBI (www.ebi.ac.uk/Tools/psa/).