CALHM1 and its polymorphism P86L differentially control Ca2+ homeostasis, mitogen‐activated protein kinase signaling, and cell vulnerability upon exposure to amyloid β

نویسندگان

  • Ana José Moreno‐Ortega
  • Izaskun Buendia
  • Lamia Mouhid
  • Javier Egea
  • Susana Lucea
  • Ana Ruiz‐Nuño
  • Manuela G. López
  • María F. Cano‐Abad
چکیده

The mutated form of the Ca²⁺channel CALHM1 (Ca²⁺homeostasis modulator 1), P86L-CALHM1, has been correlated with early onset of Alzheimer's disease (AD). P86L-CALHM1 increases production of amyloid beta (Aβ) upon extracellular Ca²⁺removal and its subsequent addback. The aim of this study was to investigate the effect of the overexpression of CALHM1 and P86L-CALHM, upon Aβ treatment, on the following: (i) the intracellular Ca²⁺signal pathway; (ii) cell survival proteins ERK1/2 and Ca²⁺/cAMP response element binding (CREB); and (iii) cell vulnerability after treatment with Aβ. Using aequorins to measure the effect of nuclear Ca²⁺concentrations ([Ca²⁺]n ) and cytosolic Ca²⁺concentrations ([Ca²⁺]c ) on Ca²⁺entry conditions, we observed that baseline [Ca²⁺]n was higher in CALHM1 and P86L-CALHM1 cells than in control cells. Moreover, exposure to Aβ affected [Ca²⁺]c levels in HeLa cells overexpressing CALHM1 and P86L-CALHM1 compared with control cells. Treatment with Aβ elicited a significant decrease in the cell survival proteins p-ERK and p-CREB, an increase in the activity of caspases 3 and 7, and more frequent cell death by inducing early apoptosis in P86L-CALHM1-overexpressing cells than in CALHM1 or control cells. These results suggest that in the presence of Aβ, P86L-CALHM1 shifts the balance between neurodegeneration and neuronal survival toward the stimulation of pro-cytotoxic pathways, thus potentially contributing to its deleterious effects in AD.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

CALHM 1 controls Ca 2 + - dependent MEK / ERK / RSK / MSK signaling in


 CALHM1 controls Ca2+-dependent MEK/ERK/RSK/MSK signaling in 1
 neurons 2
 3
 Ute Dreses-Werringloer, Valérie Vingtdeux, Haitian Zhao, Pallavi Chandakkar, Peter 4
 Davies, Philippe Marambaud 5
 6
 Litwin-Zucker Research Center for the Study of Alzheimer’s Disease, The Feinstein Institute for 7
 Medical Research, Manhasset, New York, USA. Department of Pathology, Albert Einstein 8
 College of M...

متن کامل

The Implication of Androgens in the Presence of Protein Kinase C to Repair Alzheimer’s Disease-Induced Cognitive Dysfunction

Aging, as a major risk factor of memory deficiency, affects neural signaling pathways in hippocampus. In particular, age-dependent androgens deficiency causes cognitive impairments. Several enzymes like protein kinase C (PKC) are involved in memory deficiency. Indeed, PKC regulatory process mediates α-secretase activation to cleave APP in β-amyloid cascade and tau proteins phosphorylation mecha...

متن کامل

A Polymorphism in CALHM1 Influences Ca2+ Homeostasis, Aβ Levels, and Alzheimer's Disease Risk

Alzheimer's disease (AD) is a genetically heterogeneous disorder characterized by early hippocampal atrophy and cerebral amyloid-beta (Abeta) peptide deposition. Using TissueInfo to screen for genes preferentially expressed in the hippocampus and located in AD linkage regions, we identified a gene on 10q24.33 that we call CALHM1. We show that CALHM1 encodes a multipass transmembrane glycoprotei...

متن کامل

Rare Variants in Calcium Homeostasis Modulator 1 (CALHM1) Found in Early Onset Alzheimer’s Disease Patients Alter Calcium Homeostasis

Calcium signaling in the brain is fundamental to the learning and memory process and there is evidence to suggest that its dysfunction is involved in the pathological pathways underlying Alzheimer's disease (AD). Recently, the calcium hypothesis of AD has received support with the identification of the non-selective Ca(2+)-permeable channel CALHM1. A genetic polymorphism (p. P86L) in CALHM1 red...

متن کامل

Inactivation of mitogen-activated protein kinase signaling pathway reduces caspase-14 expression in impaired keratinocytes

Objective(s):Several investigations have revealed that caspase-14 is responsible for the epidermal differentiation and cornification, as well as the regulation of moisturizing effect. However, the precise regulation mechanism is still not clear. This study was aimed to investigate the expression of caspase-14 in filaggrin-deficient normal human epidermal keratinocytes (NHEKs) and to explore the...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:

دوره 14  شماره 

صفحات  -

تاریخ انتشار 2015