APP, PSEN1, and PSEN2 mutations in early-onset Alzheimer disease: A genetic screening study of familial and sporadic cases
Summary
Background Amyloid protein precursor (APP), presenilin-1 (PSEN1), and presenilin-2 (PSEN2) mutations cause autosomal dominant forms of early-onset Alzheimer disease (AD-EOAD). Although these genes were identified in the 1990s, variant classification remains a challenge, highlighting the need to colligate mutations from large series. Methods and findings We report here a novel update (2012–2016) of the genetic screening of the large AD-EOAD series ascertained across 28 French hospitals from 1993 onwards, bringing the total number of families with identified mutations to n = 170. Families were included when at least two first-degree relatives suffered from early-onset Alzheimer disease (EOAD) with an age of onset (AOO) ≤65 y in two generations. Furthermore, we also screened 129 sporadic cases of Alzheimer disease with an AOO below age 51 (44% males, mean AOO = 45 ± 2 y). APP, PSEN1, or PSEN2 mutations were identified in 53 novel AD-EOAD families. Of the 129 sporadic cases screened, 17 carried a PSEN1 mutation and 1 carried an APP duplication (13%). Parental DNA was available for 10 sporadic mutation carriers, allowing us to show that the mutation had occurred de novo in each case. Thirteen mutations (12 in PSEN1 and 1 in PSEN2) identified either in familial or in sporadic cases were previously unreported. Of the 53 mutation carriers with available cerebrospinal fluid (CSF) biomarkers, 46 (87%) had all three CSF biomarkers—total tau protein (Tau), phospho-tau protein (P-Tau), and amyloid β (Aβ)42—in abnormal ranges. No mutation carrier had the three biomarkers in normal ranges. One limitation of this study is the absence of functional assessment of the possibly and probably pathogenic variants, which should help their classification. Conclusions Our findings suggest that a nonnegligible fraction of PSEN1 mutations occurs de novo, which is of high importance for genetic counseling, as PSEN1 mutational screening is currently performed in familial cases only. Among the 90 distinct mutations found in the whole sample of families and isolated cases, definite pathogenicity is currently established for only 77%, emphasizing the need to pursue the effort to classify variants.
Related articles
Died, euthanised, slaughtered or alive? outcomes for 10 023 Ayrshire and Holstein cows and associations between veterinary treatments and mortality
This study analyzes the outcomes for 10,023 Ayrshire and Holstein cows, focusing on the associations between veterinary treatments and mortality, including reasons for culling and cow exit strategies within Finnish dairy herds.
Cardiovascular System
This document provides an in-depth look at the structure and function of the cardiovascular system, detailing the heart, blood vessels, and the processes involved in circulation and nutrient transport throughout the body.
Human Anatomy & Physiology (Lab) Prelims | 1st Term A.Y. 2026-2027
This document outlines the organization of the human body, detailing anatomical planes, directional terms, body cavities, and cell types. It serves as a lab resource for students studying human anatomy and physiology.
Framework of Maternal and Child Health Nursing
This document outlines the framework of maternal and child health nursing, detailing the roles and goals of nurses in providing care during the childbearing and childrearing periods. It discusses the importance of family-centered care and the integration of evidence-based practices in nursing.
Framework of Maternal and Child Nursing
This document provides a comprehensive overview of maternal and child health nursing, discussing the continuum of care for mothers and children and the roles of nurses, midwives, and obstetricians in promoting family health during pregnancy and child-rearing.