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Choline acetyltransferase mutations in myasthenic syndrome due to deficient acetylcholine resynthesis.

The myasthenic syndrome due to abnormal acetylcholine resynthesis is characterized by early onset, recessive inheritance, and recurrent episodes of potentially fatal apnea. Mutations in the gene encoding choline acetyltransferase (CHAT) have been found to account for this condition. We have identified five patients from three independent families with features of this disease including, in four patients, a paradoxical worsening of symptoms with cold temperatures. Electrodiagnostic studies demonstrated impaired neuromuscular transmission in all patients. In vitro microelectrode studies performed in the anconeus muscle biopsies of two patients showed moderate reduction of quantal release. Electron microscopy of the neuromuscular junction was normal in both patients. Each patient had two heterozygous CHAT mutations including L210P and P211A (family 1), V194L and V506L (family 2), and R548stop and S694C (family 3). Three of these mutations have previously been reported and suggest that, in this syndrome, some molecular defects may be more prevalent than others.

Acetylcholine↗

Risk of thrombosis in patients with antiphospholipid antibodies and factor V Leiden mutation.

OBJECTIVE: Antiphospholipid antibodies (aPL) are thrombophilic risk markers in patients with systemic lupus erythematosus (SLE) or primary antiphospholipid syndrome (APS). The risk factors for recurrent venous or arterial thrombosis and indications for longterm anticoagulation therapy are debated. We hypothesized that carrying a second thrombophilic defect, factor V Leiden mutation, would increase the risk for thrombosis in patients with aPL. METHODS: Seventy-five patients with primary APS and 83 with SLE and aPL with or without thrombosis followed at 2 university hospitals were studied. Factor V mutation rate was analyzed in patients and in 200 healthy blood donors by polymerase chain reaction analysis. RESULTS: The prevalence of factor V Leiden mutation in patients with SLE and aPL or primary APS was similar to controls. Patients with deep vein thrombosis or arterial thrombosis did not have a significantly increased rate of factor V mutation compared to controls or to patients with aPL without thrombosis. CONCLUSION: Factor V Leiden mutation is not significantly associated with vein thrombosis in patients with aPL. However, due to the sample size we cannot rule out synergy between both factor V Leiden and aPL. A trend toward increased risk for thrombosis was detected in patients with the mutation and this should be analyzed in a larger study.

Adult↗

Molecular genetic alterations on chromosomes 11 and 22 in ependymomas.

Ependymomas arise from the ependymal cells at different locations throughout the brain and spinal cord. These tumors have a broad age distribution with a range from less than 1 year to more than 80 years. In some intramedullary spinal ependymomas, mutations in the neurofibromatosis 2 (NF2) gene and loss of heterozygosity (LOH) on chromosome arm 22q have been described. Cytogenetic studies have also identified alterations involving chromosome arm 11q, including rearrangements at 11q13, in ependymomas. We analyzed 21 intramedullary spinal, 14 ventricular, 11 filum terminale and 6 intracerebral ependymomas for mutations in the MEN1 gene, which is located at 11q13, and mutations in the NF2 gene, which is located at 22q12, as well as for LOH on 11q and 22q. NF2 mutations were found in 6 tumors, all of which were intramedullary spinal and all of which displayed LOH 22q. Allelic loss on 22q was found in 20 cases and was significantly more frequent in intramedullary spinal ependymomas than in tumors in other locations. LOH 11q was found in 7 patients and exhibited a highly significant inverse association with LOH 22q (p<0.001). A hemizygous MEN1 mutation was identified in 3 tumors, all of which were recurrences from the same patient. Interestingly, the initial tumor corresponded to WHO grade II and displayed LOH 11q but not yet a MEN1 mutation. In 2 subsequent recurrences, the tumor had progressed to anaplastic ependymoma (WHO grade III) and exhibited a nonsense mutation in exon 10 of MEN1 (W471X) in conjunction with LOH 11q. This suggests that loss of wild-type MEN1 may be involved in the malignant progression of a subset of ependymomas. To conclude, our findings provide evidence for different genetic pathways involved in ependymoma formation and progression, which may allow to define genetically and clinically distinct tumor entities.

Adolescent↗

Prognostic significance of p53 gene mutations in squamous cell carcinoma of the lung.

The aim of the present study was to analyze the prevalence and clinical importance of p53 gene mutations in surgically treated squamous cell lung carcinoma. Sixty patients were included. Fifty-one patients in stages I to IIIa were submitted to radical resection. Twenty-five samples tested positive for the p53 immunohistochemistry assay, and were analyzed for p53 gene mutations. Eleven mutations were found. Patients harboring p53 gene mutations suffered a higher incidence of recurrence and a higher mortality rate. Disease-free interval and overall survival were shorter for patients with mutated p53 gene (p=0.03 and p=0.005, respectively).

Adult↗

Genetic screening for MEN1 mutations in families presenting with familial primary hyperparathyroidism.

A large number of families with familial isolated hyperparathyroidism (FIHP) have been reported. We wanted to determine if some of these families represent early manifestations of full-blown syndromes such as multiple endocrine neoplasia type 1 (MEN-1), as early identification may alter surgical and medical management. Four small families with a family history of hyperparathyroidism without clear-cut MEN-1 features were screened for a MEN1 mutation. The 10 exons of the MEN1 gene were amplified and analyzed by single-strand conformation analysis (SSCA). Abnormal SSCA shifts were then sequenced using an automated sequencer. Two germline mutations were found: R527X and P277H. The former was detected in three members of a family consisting of two children and a mother. At the time of testing the youngest son was normocalcemic and clinically normal but subsequently developed hyperparathyroidism (HPT). Since the initial testing, the family has been confirmed to be a MEN-1 family as the mother has developed abdominal pain and an elevated serum pancreatic polypeptide and the younger brother an anterior pituitary tumor and recurrent HPT. The latter P277H mutation was identified in two of three members tested from another family. Manifestations of MEN-1 syndrome have also developed. The father now has developed diarrhea and elevated serum gastrin; and the daughter has developed recurrent HPT. Genetic screening of families who clinically have FIHP is important and may influence the type of medical and surgical treatment and follow-up, as some have MEN-1 syndrome. Long-term screening for MEN syndromes should be included in this set of patients. Positive screening may predict disease and allow early detection and appropriate treatment before initiation of symptoms.

Adolescent↗

Tumor DNA in plasma at diagnosis of breast cancer patients is a valuable predictor of disease-free survival.

PURPOSE: We examine prospectively whether the presence of plasma DNA with tumor characteristics before mastectomy is a predictive factor related to recurrence and disease-free survival (DFS). EXPERIMENTAL DESIGN: A series of 147 patients with breast carcinomas, selected sequentially, was analyzed. The characterization of plasma DNA, based on similar alterations in tumor and plasma DNA, was achieved with six polymorphic markers (D17S855, D17S654, D16S421, TH(2), D10S197, and D9S161) and mutations in the TP53 gene. Recurrence, DFS, overall survival, and 12 other clinicopathological parameters were obtained. Univariate and Cox's multivariate studies were performed. RESULTS: A total of 142 patients were eligible for study. A total of 104 tumors (73.2%) showed at least one molecular alteration. In 61 patients (42.9%), a similar molecular alteration was detected in plasma DNA and tumor DNA. No alterations were found in the plasma DNA of the remaining 81 patients (57%). During the follow-up period (median, 22 months; range, 1-46 months), we observed 23 recurrences (16%), the distribution of which was significantly different (P = 0.005) with regard to plasma DNA [17 patients (74%) with circulating tumor DNA and 6 patients (26%) without tumor plasma DNA]. Univariate statistical analysis confirmed the prognostic significance of the already known parameters (tumor size, lymph node metastases, and stage) and demonstrated that tumor plasma DNA was a predictor of DFS. In multivariate analysis, an independent borderline significance was observed for tumor plasma DNA. CONCLUSIONS: Tumor DNA in plasma at diagnosis in breast cancer patients can predict DFS, and its determination could be used as a prognostic factor in these patients.

Adult↗

Testing for contributions of mitochondrial DNA mutations to complex diseases.

Several complex disorders are suspected of being associated with mitochondrial DNA (mtDNA) mutations. We studied the statistical properties of a test based on proband-relative pairs to identify potential mtDNA mutation involvement in a complex disorder. The test compares the recurrence risk of relatives of probands along the mitochondrial lineage with that of relatives along the nonmitochondrial lineage. If mtDNA mutations are involved, the recurrence risk will be higher among relatives in the mitochondrial lineage. The form of the test is independent of the assumed models of inheritance and interaction of the nuclear autosomal mutations with mtDNA mutations. The power of the test, however, differs among the different models and by the type of proband-relative pairs used in the test. We considered heterogeneity models with and without phenocopies, a three-state heteroplasmic mtDNA transmission model, and a multiplicative epistasis model. Under the heterogeneity model, the power of the test increases as the relationship between the proband and the relative becomes more distant. Under the multiplicative epistasis model, the power of the test decreases as the relationship between the proband and the relative becomes more distant.

DNA, Mitochondrial↗

p53 mutation in plasma DNA and its prognostic value in breast cancer patients.

PURPOSE: Tumor-specific DNA has recently been detected in the plasma of lung, head and neck, breast, and colon cancer patients. Detection of tumor-specific genetic materials in cancer patients at sites distant from the tumor, such as in the blood, may provide a unique and valuable tumor marker for diagnosis and prognosis. EXPERIMENTAL DESIGN: The present investigation was aimed at determining the presence of p53 mutations in the peripheral blood of breast cancer patients and its prognostic value in these patients. RESULTS: In this study, we found that the mean concentration of plasma DNA in healthy women was 21 ng/ml, whereas in patients with breast cancer the mean concentration was 211 ng/ml (P < 0.01). p53 mutations were detected in the primary tumors of 46 of 126 (36.5%) breast cancer patients. Of these 46 patients, 30 (65.1%) were found to have p53 mutations in their plasma DNA. p53 mutations in plasma DNA were strongly correlated with clinical stage, tumor size, lymph node (LN) metastasis, and estrogen receptor status (P < 0.05). After a median follow-up of 29 months, univariate and multivariate analysis revealed that both primary tumor and plasma DNA p53 mutations were significant prognostic factors for both relapse-free and overall survival. Furthermore, we demonstrated that patients with both primary tumor and plasma p53 mutations have the worst survival. This outcome occurs in both LN-positive and LN-negative groups. Thirteen of the 22 (59%) patients with recurrence and/or metastasis later had detectable p53 mutations in their plasma DNA. CONCLUSIONS: Detection of p53 mutations in plasma DNA may be used as a prognostic factor and an early marker to indicate recurrence or distant metastasis.

Adult↗

Data on the recurrence of breast tumors fit a model in which dormant cells are subject to slow attrition but can randomly awaken to become malignant.

We successfully modeled the recurrence of tumors in breast cancer patients, assuming that: (i) A breast cancer patient is likely to have some circulating metastatic cells, even after initial surgery. (ii) These metastatic cells are dormant. (iii) The dormant cells are subject to attrition by the body's immune system, or by random apoptosis or senescence. (iv) Recurrence suppressor mechanisms exist. (v) When such genes are disabled by random mutations, the dormant metastatic cell is activated, and will develop to a cancer recurrence. The model was also fitted to data on the survival of pancreatic cancer patients. The time course of cancer recurrence in a group of poor prognosis breast cancer patients could not be linked to the over- (or under-) expression of any gene in the primary tumors from which the recurrent tumors derived. Thus, the recurrence of the tumor in breast cancer patients appears to be a random event. Inasmuch as the kinetics of cancer recurrence in published data sets closely follows the model found for the appearance of sporadic retinoblastoma, tumor recurrence could be triggered by mutations in awakening- suppressor mechanisms. The retinoblastoma tumor suppressor gene was identified by tracing its occurrence in familial retinoblastoma pedigrees. Will it be possible to track the postulated cancer recurrence, awakening suppressor gene(s) in early recurrence breast cancer patients?

Breast Neoplasms↗

Homozygosity in the single nucleotide polymorphism Ser128Arg in the E-selectin gene associated with recurrent venous thromboembolism.

BACKGROUND: The single nucleotide polymorphism (SNP) Ser128Arg in the E-selectin gene is overrepresented in certain patient populations with atherosclerosis or restenosis. As this SNP enhances tissue factor-triggered coagulation in humans during systemic inflammation, we hypothesized that it may also predispose for the development of recurrent venous thromboembolism (VTE). METHODS: A total of 585 patients were prospectively observed after first VTE for recurrent, objectively documented, symptomatic VTE. Patients with secondary VTE, homozygous factor V Leiden, natural inhibitor deficiencies, lupus anticoagulant, or long-term anticoagulation therapy were excluded. The S128R SNP was genotyped by mutagenically separated polymerase chain reaction. RESULTS: A total of 102 patients (17%) were heterozygous, and 11 were homozygous (2%) for the Ser128Arg mutation. Ninety patients (15%) had recurrent VTE during follow-up. Homozygosity for the Ser128Arg SNP increased the cumulative likelihood, particularly for early recurrent VTE (log rank test, P<.05) and was an independent predictor of recurrent VTE (hazard ratio [HR], 4.1; 95% confidence interval [CI], 1.5-11.4) in a multivariate Cox regression model. In contrast, heterozygosity for the polymorphism was associated with an unaltered HR (HR, 1.1; 95% CI, 0.6-1.9) for recurrent VTE. CONCLUSIONS: Homozygosity for the S128R E-selectin allele appears to increase the risk for recurrent VTE several fold. If these findings are confirmed, this may represent a novel risk factor for recurrent VTE. These results also expand our knowledge on the association of this SNP with thrombotic disorders.

Adult↗

A novel missense mutation (C30S) in the gene encoding tumor necrosis factor receptor 1 linked to autosomal-dominant recurrent fever with localized myositis in a French family.

OBJECTIVE: To characterize both phenotypic (clinical features and magnetic resonance imaging [MRI] findings) and genotypic aspects of autosomal-dominant recurrent fever, also known as tumor necrosis factor receptor (TNFR)-associated periodic syndrome (TRAPS), in a French family and to investigate the role of the mutated 55-kd tumor necrosis factor alpha (TNFalpha) receptor (TNFR1) in the pathogenesis of the disease. METHODS: The coding region of TNFR1 was sequenced in 2 individuals with TRAPS (the propositus and her grandfather) and in 3 clinically unaffected relatives. Expression of soluble TNFR1 (sTNFR1) was investigated in 3 of the family members carrying a C30S mutation in TNFR1, and was compared with the levels of soluble TNFR2 (sTNFR2) by enzyme-linked immunosorbent assay. The membrane TNFR1 expression was then compared with membrane TNFR2 levels at the surface of peripheral blood mononuclear cells by flow cytometric analysis. The clinical heterogeneity in this French family was investigated by searching polymorphic variants in the TNFalpha promoter by DNA sequencing. RESULTS: Both the disease course and the clinical presentation in the propositus were highly indicative of TRAPS. MRI study of the segmental inflammatory process in the limbs showed abnormal signals in the muscle and subcutaneous tissue without involvement of adjacent joints or fascia. A novel missense mutation, C30S, in the first extracellular N-terminal cysteine-rich domain (CRD1) of TNFR1 was characterized in the propositus, her affected grandfather, and her clinically unaffected father. Expression of membrane TNFR1 at the surface of monocytes and polymorphonuclear leukocytes, as well as the levels of sTNFR1 in serum when the disease was not active were not modified in the 3 individuals carrying the TNFR1 C30S mutation. In contrast, during attacks, sTNFR1 levels remained abnormally low, as compared with the levels in unrelated patients with active adult-onset systemic Still's disease. The clinical heterogeneity could not be explained by a polymorphic variant in the TNFalpha promoter. CONCLUSION: TRAPS is a distinct clinical and radiologic disease entity that is responsible for recurrent fever and migratory cellulitis-like processes with localized myositis. We have identified a novel TNFR1 mutation, C30S, that is located in the CRD1 domain in a French family affected by the disease. This mutation seems to affect the level of sTNFR1, which did not increase in the propositus during inflammatory attacks.

Adolescent↗

TP53 overexpression in recurrent endometrial carcinoma.

OBJECTIVE: To study alterations within the p53 pathway in relation to the development of recurrent stage I endometrioid endometrial carcinoma. METHODS: Paraffin-embedded tumor tissue of both primary and recurrent tumors from 44 patients with and 44 without recurrence was used for immunohistochemical analysis of TP53, hMdm2, P21(Waf1/Cip1) and M30. DNA was extracted, and mutation analysis of p53 (exon 5-8, 11) was performed by direct sequencing. RESULTS: TP53 overexpression was significantly associated with recurrent disease: Odds Ratio 3.8 (95% CI: 1.5-9.8). Overexpression of TP53 was associated with lower staining indices (SI:0-9) of both hMdm2 and P21 in tumors of patients with recurrence, compared to controls: 2.0 +/- 0.4 vs. 4.0 +/- 0.8 and 1.9 +/- 0.8 vs. 3.6 +/- 0.8, respectively. Eight p53 missense mutations were identified in six patients with recurrence and two controls. One nonsense mutation was found in a patient with recurrence and one deletion in a control patient. Only a minority of TP53 overexpression cases could be explained by the presence of these p53 mutations. CONCLUSION: TP53 overexpression was significantly predictive for recurrent endometrial carcinoma, and mostly not correlated with p53 mutations. Concomitant low hMdm2 and P21(Waf1/Cip1) expression in tumors with overexpressed TP53 suggests a dysfunctional TP53-P21(Waf1/Cip1) pathway.

Aged↗

von Willebrand disease: a database of point mutations, insertions, and deletions. For the Consortium on von Willebrand Factor Mutations and Polymorphisms, and the Subcommittee on von Willebrand Factor of the Scientific and Standardization Committee of the International Society on Thrombosis and Haemostasis.

The current system for the diagnosis and classification of von Willebrand disease (vWD) is quite complex, with more than 20 distinct variants described. Over the past few years considerable progress has been made toward an understanding of vWD at the molecular level. A small cluster of mutations within the vWF A1 homologous repeat appears responsible for over 90% of type IIB vWD. A similar cluster of mutations in the vWF A2 homologous repeat accounts for the majority of type IIA vWD. By RFLP analysis, several type II vWD mutations have been shown to be recurrent on distinct haplotype backgrounds, suggesting independent genetic origins (see accompanying manuscript for a complete list of known polymorphisms). Several mutations at the N-terminus of the mature vWF subunit have been identified in association with abnormal factor VIII binding. Homozygotes for this abnormal vWF present with a hemophilia-like phenotype that is autosomal recessive in inheritance. In a small subset of patients with type III vWD large gene deletions have been identified on one or both vWF alleles. Carriers heterozygous for a deleted locus and one normal vWF gene are generally asymptomatic. Nonsense mutations and other defects resulting in loss of vWF mRNA expression from one allele have also been associated with a recessive type III vWD phenotype. No distinct molecular defect responsible for classic type I vWD has yet been defined.

DNA Mutational Analysis↗

Increased chromosomal mutation rate after hybridization between two subspecies of grasshoppers.

Hybridization between two chromosomally distinct subspecies of the grasshopper Caledia captiva results in a high incidence of novel chromosomal rearrangements among the backcross progeny. Rearrangements are restricted to those chromosomes derived from the F1 hybrid parent. Chromosomal involvement is nonrandom with the same rearrangement occurring repeatedly in different backcrosses. A single individual can also generate an array of different rearrangements among its offspring. Several of the rearrangements have also been found in natural populations. The nonrandom and recurrent nature of these chromosomal mutations at high frequencies provides a plausible explanation for the establishment and fixation of chromosomal rearrangements in natural populations.

Animals↗

The origins of multiple squamous cell carcinomas in the aerodigestive tract.

BACKGROUND: Chemoprevention and cessation of smoking and alcohol may prevent development of multiple tumors (MTs) in the aerodigestive tract if new MTs arise independently, but they are of no benefit if MTs are due to migration of an already transformed clone of tumor cells. This issue was addressed in this study by investigation of the clonality among MTs. METHODS: Mutation analysis of the entire coding region of p53 and loss of heterozygosity (LOH) pattern analysis of microsatellite markers on chromosome arms 3p, 9p, and 17p are promising for the investigation of clonality. In the first part of this study, the authors established the variability and stability of these clonal markers by comparing primary head and neck squamous cell carcinomas (HNSCCs) with their metastases. In the second part of this study, the authors evaluated nine patients with multiple HNSCCs using these markers. In the final part, the authors illustrate the use of these clonal markers in 11 patients for whom there was diagnostic uncertainty as to whether their second squamous cell carcinoma was either a new primary tumor, a metastasis, or a recurrence. RESULTS: Both p53 gene mutations and LOH patterns were stable during tumor progression. Furthermore, the variability of p53 gene mutations was high. More than 90% of the tumors contained a p53 mutation. A particular mutation never occurred more than twice in a total of 69 primary HNSCCs. Five of 69 cases presented a common mutation. In contrast, LOH patterns showed less variability; they were identical in 5 of 16 cases. The metachronous HNSCCs from nine patients all showed different p53 mutations, and in the three cases that were subjected to LOH analysis different patterns were observed. All 11 patients for whom there was diagnostic uncertainty about the origin of their second squamous cell carcinoma could be categorized as having multiple primary tumors, disseminated disease, or recurrent disease. CONCLUSIONS: Metachronous HNSCCs at different locations are not clonally related and thus have not developed from the migration of tumor cells.

Carcinoma, Squamous Cell↗

The major allele of the alanine:glyoxylate aminotransferase gene: nine novel mutations and polymorphisms associated with primary hyperoxaluria type 1.

We describe nine novel mutations and polymorphisms occurring on the major allele of the human alanine:glyoxylate aminotransferase gene in patients with primary hyperoxaluria type 1, an autosomal recessive disease resulting from a deficiency of the liver peroxisomal enzyme alanine:glyoxylate aminotransferase (AGT; EC 2.6.1.44). The PH1 mutations include two small frameshift mutations, 327delG and 117_118insCA, a large deletion spanning exon 9 and portions of the flanking introns, a splice junction mutation, IVS6+5G>C, and two missense mutations, G161R and S218L. Expression studies of the two missense mutations indicated very little enzymatic activity associated with either of them. Three polymorphisms in the coding sequence were also identified, I279T, A280V, and T235T. Expression studies of I279T and A280V suggested essentially normal AGT activity. I279T, found in two cases, was located on a 33_34insC allele. A280V and T235T were both located on the same allele as IVS6+5G>C. We have also identified recurrences of previously reported rare mutations, 33delC, IVS7-1G>C, and IVS4-1G>A. Five of the six novel PH1 mutations occurred in a compound heterozygous state with either of two common PH1 mutations, G170R or 33_34insC. S218L was apparently homozygous in two individuals. These findings contribute to our overall picture of heterogeneity of mutations in PH1 and the AGT major allele.

Alleles↗

RB1 gene mutations in retinoblastoma.

Mutations in both alleles of the RB1 gene are causal for the development of retinoblastoma, a childhood tumor of the eye. The spectrum of somatic and germline mutations in this gene is dominated by small mutations. Data on small mutations are listed in a locus specific database available at http://www.d-lohmann.de/Rb/mutations.html. Analysis of 368 reported small mutations reveals considerable heterogeneity. A notable recurrence of transitions is observed at 13 CpG-dinucleotides that are part of CGA codons or splice donor sites. Most mutations create a premature termination codon. With few exceptions, patients heterozygous for mutations of this kind develop bilateral retinoblastoma. Missense mutations and inframe deletions are rare. Some of these mutations are associated with a distinct phenotype marked by incomplete penetrance and reduced expressivity.

Chromosome Mapping↗

Duplication or amplification of chromosome band 11q23, including the unrearranged MLL gene, is a recurrent abnormality in therapy-related MDS and AML, and is closely related to mutation of the TP53 gene and to previous therapy with alkylating agents.

Gene amplification is a rare phenomenon in acute leukemia, but recently amplification of specific chromosome bands containing genes rearranged in leukemia-specific balanced chromosome translocations has been reported in a few cases. We detected duplication or amplification of chromosome band 11q23 with 3-7 copies of the MLL gene by fluorescence in situ hybridization in 12 out of 70 unselected patients with therapy-related myelodysplasia or acute myeloid leukemia (17%). In all but one case, the supernumerary copies of MLL were located to previously unidentified marker chromosomes or unbalanced translocations. In 4 of the 12 patients, 2-6 copies were located together on the same chromosome arm representing amplification, 7 patients had single, extra duplicated copies of MLL, whereas both amplification and duplication were observed in the same cell in 1 patient. Comparative genomic hybridization demonstrated gain of varying, often large parts of 11q in five patients. The MLL gene was shown to be unrearranged in all 12 patients. Seven out of eight patients with duplication or amplification of MLL had mutations of TP53. Patients with supernumerary copies of MLL were in general older (P = 0.007) and had a shorter survival (P < 0.001) compared to other patients. Duplication or amplification of MLL was significantly associated with a complex karyotype (P = 0.002), with deletion or loss of 5q (P = 0.001), and with prior therapy with alkylating agents. These results support the existence of a specific genetic pathway in t-MDS and t-AML with many previously unidentified chromosome aberrations demonstrated to represent extra copies of parts of 11q, including the unrearranged MLL gene.

Acute Disease↗