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Differential expression of full-length and NH2 terminally truncated FAM134B isoforms in normal physiology and cancer
Umur Keles1,2, Evin Iscan1,2, Huriye Erbak Yilmaz2
1Izmir Biomedicine and Genome Center, Izmir, Turkey.
Abstract:
Selective autophagy of the endoplasmic reticulum (ER), namely ER-phagy, is mediated by ER-localized receptors, which are recognized and sequestered by GABARAP/LC3B-decorated phagophores and transferred to lysosomes for degradation. Being one such receptor, FAM134B plays critical roles in cellular processes such as protein quality control and neuronal survival. FAM134B has also been associated with different cancers, although its exact role remains elusive. We report here that the FAM134B gene encodes not one but at least two different protein isoforms: the full-length and the NH2 terminally truncated forms. Their relative expression shows extreme variation, both within normal tissues and among cancer types. Expression of full-length FAM134B is restricted to the brain, testis, spleen, and prostate. In contrast, NH2 terminally truncated FAM134B is dominant in the heart, skeletal muscle, kidney, pancreas, and liver. We compared wild-type and knockout mice to study the role of the Fam134b gene in starvation. NH2 terminally truncated FAM134B-2 was induced in the liver, skeletal muscle, and heart but not in the pancreas and stomach following starvation. Upon starvation, Fam134b-/- mice differed from wild-type mice by less weight loss and less hyperaminoacidemic and hypocalcemic response but increased levels of serum albumin, total serum proteins, and α-amylase. Interestingly, either NH2 terminally truncated FAM134B or both isoforms were downregulated in liver, lung, and colon cancers. In contrast, upregulation was observed in stomach and chromophobe kidney cancers.NEW & NOTEWORTHY We reported tissues expressing FAM134B-2 such as the kidney, muscle, heart, and pancreas, some of which exhibit stimulated expression upon nutrient starvation. We also demonstrated the effect of Fam134b deletion during ad libitum and starvation conditions. Resistance to weight loss and hypocalcemia, accompanied by an increase in serum albumin and α-amylase levels, indicate critical roles of Fam134b in physiology. Furthermore, the differential expression of FAM134B isoforms was shown to be significantly dysregulated in human cancers.
Insights
The FAM134B gene produces two protein forms, with varying expression in tissues and cancers. Fam134b knockout mice show altered responses to starvation, highlighting its physiological importance and dysregulation in cancer.
Area of Science:
- Cell Biology
- Molecular Biology
- Physiology
Background:
- Selective autophagy, or ER-phagy, removes endoplasmic reticulum (ER) components via receptors like FAM134B.
- FAM134B is crucial for protein quality control and neuronal survival, with roles in cancer still being investigated.
Purpose of the Study:
- To investigate the existence and tissue-specific expression of FAM134B protein isoforms.
- To determine the physiological role of Fam134b during nutrient starvation using a knockout mouse model.
- To analyze the expression patterns of FAM134B isoforms in various human cancers.
Main Methods:
- Analysis of FAM134B gene products to identify distinct protein isoforms.
- Comparative study of wild-type and Fam134b knockout mice under ad libitum and starvation conditions.
- Examination of FAM134B isoform expression in normal human tissues and diverse cancer types.
Main Results:
- The FAM134B gene encodes at least two isoforms: full-length and NH2-terminally truncated.
- Tissue-specific expression patterns were observed, with distinct distributions for each isoform.
- Fam134b knockout mice exhibited reduced weight loss and hypocalcemia, with increased serum albumin and alpha-amylase levels during starvation.
- Differential expression of FAM134B isoforms was noted in various cancers, with downregulation in some and upregulation in others.
Conclusions:
- FAM134B exists as at least two isoforms with distinct tissue expression profiles.
- Fam134b plays a significant role in physiological adaptation to starvation, influencing metabolism and homeostasis.
- Dysregulation of FAM134B isoform expression is implicated in the development and progression of human cancers.
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