Thursday, April 21, 2022

What does *1 really mean? And why does that matter?

A Haiku about PGx for National Poetry Month.


Diagnosed star one,

Yet severe toxicity.

What did the lab test?




What does *1 really mean? And why does that matter?


The star alleles of the drug metabolizing enzyme genes are an unusual way of defining variation and are perhaps one of the most misunderstood aspects of pharmacogenomics. Arising from attempts to describe and standardize the molecular basis of different drug phenotypes; debrisoquine poor metabolizer phenotype, etc [PMID: 7773298, PMID: 8807658].  Sometimes authors use the term “wild type”, even for humans, to describe the most common form of the gene or protein in a given population where it displays the expected drug metabolism phenotype. The *1 allele is generally used to denote the absence of the variants tested. However, it is not a stable assignment; a *1/*1 individual only tested at one locus may not have the same genetic sequence as a *1/*1 individual tested for a panel of 10 variants in the same gene. This really matters when evaluating the likelihood of drug phenotype - the "reference" is only as good as the number of variants that were checked. *1 is rather a placeholder, it is the absence of certainty, because even with a panel that covers variants that represent 99% of known variation (in the populations examined so far which are not representative of the full global population) there may still be rare variants with significant impact on protein function that we may not yet have documented. While a *1/*1 may not be at increased risk of toxicity (or other phenotypes), or require a change of dosage immediately, they still have the baseline level of risk and it shouldn’t be a huge surprise if they exhibit an adverse reaction to a drug. 


Recent publications of case studies that concluded a lack of involvement of known pharmacogenes without documenting what was tested: 

PMID:35180762 - “Acral Skin Rash Caused by Altered Mercaptopurine

Metabolism in Maintenance Therapy for B-Cell

Acute Lymphoblastic Leukemia”  excerpt “TPMT and NUDT15 genotype at diagnosis were wildtype alleles and therefore we started with full 6-MP dosing.”

This issue is not limited to pharmacogenes using star allele nomenclature: “5-Fluorouracil Neurotoxicity in the Absence of Dihydropyrimidine Dehydrogenase Deficiency Case Report” [PMID:35419161] excerpt “Our patient tested negative for DPD mutations, but it remains possible she harbored a genetic variant not accounted for in the genetic testing panel. Other known risk factors include mutations in the orotate phosphoribosyltransferase and thymidylate synthase genes… “


We recommend authors always include the list of all variants that were tested, and other features see [PMID:30406943].

Thursday, April 14, 2022

Update to PharmGKB Pediatric Drug Summaries

The third round of PharmGKB's pediatric drug summaries is now live on PharmGKB pediatric. This release includes over 20 additional drugs with a focus on those on the Best Pharmaceuticals for Children Act (BPCA) priority list, including:

These pediatric drug summaries contain key information relevant to prenatal, postnatal, and pediatric populations, manually curated from PharmGKB annotations, pathways, CPIC guidelines, and FDA-approved drug labels.

PharmGKB continues to add to the list of drugs with pediatric summaries.

Wednesday, April 6, 2022

"Ask a Curator" live zoom event

PharmGKB curators will hold a series of live Q&A events over Zoom to help people find and use different aspects of the knowledgebase. We hope this will be a great way to answer questions about PharmGKB and PGx which are specific to users’ individual needs or projects.  These events will demonstrate the full extent of the resources available on PharmGKB, as well as details about those resources and how to download, use, and cite data from PharmGKB. 


In order to tailor these events for users with similar needs from PharmGKB, the first event will focus on researchers. Future events geared towards educators and clinicians are in the works, as well as events hosted at different times for our global audience. We will also be recording this upcoming event along with future events for those who are unable to attend live. Recordings will be posted on the PharmGKB YouTube channel.


We are asking people to please register in advance with their questions so curators can better focus these events. There will also be the opportunity to ask questions during the event. Events will be limited to 20 participants to allow enough time for everyone’s questions to be answered.

Sign up here for Tuesday April 26th at 12pm EST, 9am PST, 5pm GMT

Can’t make it but want to sign up for a future Ask a Curator? Join our mailing list here.


Monday, March 21, 2022

National Academy Seeking Public Feedback on Use of Population Descriptors in Genomics Research

 The National Academy's Committee on Use of Race, Ethnicity, and Ancestry as Population Descriptors in Genomics Research is now actively requesting public comments from those involved in genomics research about how they use descriptors like race, ethnicity, and ancestry as well as thoughts on potential improvements to usage. 

For those who would like to be considered as a potential speaker at their workshop on April 4th, the deadline for submission is March 23rd. Comments will be accepted until June 1st, 2022, and may be potentially considered for a summer workshop or use in the committee's final report.

We encourage PharmGKB and CPIC users to please provide their thoughts, in order to help the committee incorporate feedback from as many people as possible as they continue this important work.

Thursday, February 24, 2022

Retirement of CYP3A5 alleles in PharmVar

The PharmVar CYP3A5 expert panel has undertaken an extensive review of CYP3A5 allelic variation which led to the retirement of three star alleles, namely CYP3A5*2, *4 and *5. Based on new data, their defining variants were always found together with the CYP3A5*3-defining splice defect (c.219-237) meaning that their variants are part of CYP3A5*3 haplotypes and do not occur on their own as previously assumed.  Specifically, c.1193C>A (formerly defining CYP3A5*2) is now part of the CYP3A5*3.010 suballele, c.599A>G (formerly defining CYP3A5*4) is now part of the CYP3A5*3.009 suballele, and c.432+2T>C is part of the CYP3A5*3.005 suballele which has first been described in 2003 as published as CYP3A5*3G.

This update makes genotype testing and analysis simpler moving forward. CYP3A5*2, *4 and *5 no longer need to be tested as they are tagged by the CYP3A5*3 variant and thereby accurately identified and reported as CYP3A5*3. Note that in the past, a patient who tested homozygous for c.219-237 (CYP3A5*3) and heterozygous for c.1193C>A (CYP3A5*2) may have been reported as having a CYP3A5*3/*3+*2 diplotype.

 

This update on CYP3A5 nomenclature is now shown on the PharmVar CYP3A5 page and is described in more detail in the PharmVar CYP3A5 GeneFocus review published in Clinical Pharmacology and Therapeutics.

 

PharmGKB, CPIC and PharmCAT have been updated accordingly to reflect this change.

Monday, February 21, 2022

Update to individual statin pathways to support release of new CPIC guidelines for statins

To coincide with the release of the updated CPIC guidelines for SLCO1B1, ABCG2 and CYP2C9 and statin-associated musculoskeletal symptoms, we have updated the statin pharmacokinetic (PK) pathways. We now have one PK pathway for each individual drug in the guideline and have added details of the specific metabolites as well as the candidate genes and references. 

Atorvastatin Pathway, Pharmacokinetics

Fluvastatin Pathway, Pharmacokinetics

Lovastatin Pathway, Pharmacokinetics

Pitavastatin Pathway, Pharmacokinetics

Pravastatin Pathway, Pharmacokinetics

Rosuvastatin Pathway, Pharmacokinetics

Simvastatin Pathway, Pharmacokinetics


Note: If you have visited pathways recently you may need to refresh your browser or empty cookies to see the updated versions. Plus the history log at the bottom of the pathway lets you know if you are seeing the most updated version. 


Friday, February 18, 2022

CPIC Publishes Guideline for SLCO1B1, ABCG2, CYP2C9 and Statin Therapy

The CPIC guideline for SLCO1B1, ABCG2, and CYP2C9 and statin-associated musculoskeletal symptoms (SAMS) has been published in the journal Clinical Pharmacology and Therapeutics. This guideline is an update to the CPIC guideline for simvastatin and SLCO1B1, but now includes expanded literature review on four additional genes, ABCG2, CYP2C9, HMGCR and CYP3A4/5 and all statins. 

The guideline gives specific prescribing recommendations for: 
It also provides a figure illustrating statin recommendations with preferred statin intensity and statin dose stratified by SLCO1B1 phenotype (i.e., decreased or poor function):


For therapeutic recommendations and further details, please refer to the guideline and supplemental materials on the CPIC website. Annotations of the guideline, including interactive genotype picker tool for each statin, is available on the PharmGKB website.