Familial hypobetalipoproteinemia (FHBL) and abetalipoproteinemia (ABL) are inherited disorders of apolipoprotein B (apo B)-containing lipoproteins that result from mutations in apo B and microsomal triglyceride transfer protein (MTP) genes, respectively. Here we report three patients with severe deficiency of plasma low-density lipoprotein (LDL) and apo B. Two of them (probands F.A. and P.E.) had clinical and biochemical phenotype consistent with ABL. Proband F.A. was homozygous for a minute deletion/insertion (c.1228delCCCinsT) in exon 9 of MTP gene predicted to cause a truncated MTP protein of 412 amino acids. Proband P. E. was heterozygous for a mutation in intron 9 (IVS9-1G>A), previously reported in an ABL patient. We failed to find the second pathogenic mutation in MTP gene of this patient. No mutations were found in apo B gene.The third proband (D.F.) had a less severe lipoprotein phenotype which was similar to that of heterozygous FHBL and appeared to be inherited as a co-dominant trait. However, he had no mutations in apo B gene. He was found to be a compound heterozygote for two missense mutations (D384A and G661A), involving highly conserved regions of MTP. Since this proband was also homozygous for 2 allele of apolipoprotein E (apo E), it is likely that his hypobetalipoproteinemia derives from a combined effect of a mild MTP deficiency and homozygosity for apo E2 isoform.

Mutations in MTP gene in abeta- and hypobeta-lipoproteinemia / Di Leo, E; Lancellotti, Sandra; Penacchioni, Jy; Cefalù, Ab; Averna, M; Pisciotta, L; Bertolini, S; CALANDRA BUONAURA, Sebastiano; Gabelli, C; Tarugi, Patrizia Maria. - In: ATHEROSCLEROSIS. - ISSN 0021-9150. - STAMPA. - 180:2(2005), pp. 311-318. [10.1016/j.atherosclerosis.2004.12.004]

Mutations in MTP gene in abeta- and hypobeta-lipoproteinemia

LANCELLOTTI, Sandra;CALANDRA BUONAURA, Sebastiano;TARUGI, Patrizia Maria
2005

Abstract

Familial hypobetalipoproteinemia (FHBL) and abetalipoproteinemia (ABL) are inherited disorders of apolipoprotein B (apo B)-containing lipoproteins that result from mutations in apo B and microsomal triglyceride transfer protein (MTP) genes, respectively. Here we report three patients with severe deficiency of plasma low-density lipoprotein (LDL) and apo B. Two of them (probands F.A. and P.E.) had clinical and biochemical phenotype consistent with ABL. Proband F.A. was homozygous for a minute deletion/insertion (c.1228delCCCinsT) in exon 9 of MTP gene predicted to cause a truncated MTP protein of 412 amino acids. Proband P. E. was heterozygous for a mutation in intron 9 (IVS9-1G>A), previously reported in an ABL patient. We failed to find the second pathogenic mutation in MTP gene of this patient. No mutations were found in apo B gene.The third proband (D.F.) had a less severe lipoprotein phenotype which was similar to that of heterozygous FHBL and appeared to be inherited as a co-dominant trait. However, he had no mutations in apo B gene. He was found to be a compound heterozygote for two missense mutations (D384A and G661A), involving highly conserved regions of MTP. Since this proband was also homozygous for 2 allele of apolipoprotein E (apo E), it is likely that his hypobetalipoproteinemia derives from a combined effect of a mild MTP deficiency and homozygosity for apo E2 isoform.
2005
180
2
311
318
Mutations in MTP gene in abeta- and hypobeta-lipoproteinemia / Di Leo, E; Lancellotti, Sandra; Penacchioni, Jy; Cefalù, Ab; Averna, M; Pisciotta, L; Bertolini, S; CALANDRA BUONAURA, Sebastiano; Gabelli, C; Tarugi, Patrizia Maria. - In: ATHEROSCLEROSIS. - ISSN 0021-9150. - STAMPA. - 180:2(2005), pp. 311-318. [10.1016/j.atherosclerosis.2004.12.004]
Di Leo, E; Lancellotti, Sandra; Penacchioni, Jy; Cefalù, Ab; Averna, M; Pisciotta, L; Bertolini, S; CALANDRA BUONAURA, Sebastiano; Gabelli, C; Tarugi, Patrizia Maria
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/636998
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