function. Polymorphism can determine susceptibility
to disease. The impact of polymorphism is a change
in the vulnerability of a population to illness. In this
study, the Mn-SOD gene Ala16Val polymorphism of
PTB patients with diabetes showed that the Val/Val
genotype frequency was higher compared the wild-
type Ala/Ala. Ala/Ala genotype was wild-type of Mn-
SOD gene and the occurrence of variations such as
Ala/Val heterezygote and Val/Val mutant-
homozygote may occur is due to adaptation to the
environment that is inherited genetically to next
generation (Williams, et al., 1998). Usually, the
presence of polymorphism relates only to a person's
susceptibility to disease but in this present results
have not been able to prove that these genetic
variations contribute to the risk of vulnerability to
suffer PTB with diabetes. Genotype analysis is
required in the healthy control group as a comparison.
Hardy-Weinberg Equilibrium was analysis
performed by the chi-square test. In this research, the
Mn-SOD gene Ala16val polymorphisms in PTB
patients with diabetes is consistent with the HWE (p>
0.05). The relative proportions of genotype in the
population of PTB patients with diabetes constant
from one generation to the next. The genotype in this
population still in equilibrium is due to the possibility
of random marriage, and no migration to the
population (Andrews, 2010).
4 CONCLUSION
In this research shows that the Val/Val genotype of
Mn-SOD gene polymorphism has a higher percentage
than Ala/Val and wild-type homozygote Ala/Ala
genotype. It is necessary to conduct a study that
compares the group of PTB patients with diabetes
with the healthy control group to see the genotype
mutant as a risk factor for the development of a
disease.
ACKNOWLEDGEMENT
The present research is supported by the University
of Sumatera Utara (USU) under the research grant
TALENTA USU of the Year 2018 with Contract
Number 2590/UN5.1.R/PPM/2018.
REFERENCES
Andrews, C.A., 2010. The Hardy-Weinbreg Principle.
Nature Edu Knowledge 3(10):65.
Bresciani, G., Cruz, I.B., de Paz, J.A., Cuevas, M.J.,
González-Gallego, J., 2013. The MnSOD Ala16Val
SNP: relevance to human diseases and interaction with
environmental factors. Free Radic Res 47: 781-792.
Dooley, K.E., and Chaisson, R.E, 2009. Tuberculosis and
diabetes mellitus: Convergence of two epidemics.
Lancet Infect Dis. 9(12):737-746.
Flier, J.S, and Maratos-Flier, E., 2010. Harrison’s Principle
of Internal Medicine 17
th
edition USA: The McGraw-
Hill Companies 622-629.
Mihardja, L., 2009. Faktor yang berhubungan dengan
pengendalian gula darah pada penderita diabetes
mellitus di perkotaaan Indonesia. Maj Kedokt Indon 59
(9) 418-23.
Nakanishi, S., Yamane, K., Ohishi, W., Nakashima, R.,
Yoneda, M., 2008. Manganese superoxide dismutase
Ala16Val polymorphism is associated with the
development of type 2 diabetes in Japanese-Americans.
Diabetes Res Clin Pract 81:381-385.
PDPI. Perhimpunan Dokter Paru Indonesia, 2011.
Tuberkulosis: Pedoman diagnosis dan penatalaksanaan
di Indonesia Jakarta: Indah Offset Citra Grafika.
PERKENI. Perkumpulan Endokrinologi Indonesia, 2015.
Pengelolaan dan Pencegahan Diabetes Melitus Tipe 2
di Indonesia.
Rochmah, W., 2009. Diabetes Mellitus pada Usia Lanjut In
Setiati S Ilmu Penyait Dalam Edisi 6 Jakarta: Interna
Publishing 1969-1971
Rodwell, V.W., Bender, D.A., Bitham, K.M., Kennelly,
P.J.,Weil, P.A., 2015. Harper’s Illustrated Biochemistr
Harper’s Illustrated BiochemistryMcgraw-Hill Medical
58-59.
Pacal, L., Varvarovska, J., Rusavy, Z., Lacigova, S.,
Stetina, R., Racek, J., Pomahacova, R., Tanhauserova,
V., Kankova, K., 2011. Parameters of oxidative stress,
DNA damage and DNA repair in type1 and type2
diabetes mellitus. Arch. Physiol.Biochem.117: 222–
230.
Podell, B.K., 2014. The Pathogenesis of Diabetes-
Tuberculosis Comorbidity. For the Degree of Doctor of
Philosophy Colorado State University UMI
Dissertation Publishing. Published by ProQuest LLC
Pourvali, K., Abbasi, M., Mottaghi, A., 2016. Role of
Superoxide Dismutase 2 Gene Ala16Val
Polymorphism and Total Antioxidant Capacity in
Diabetes and its Complications. Avicenna J Med
Biotech.8(2): 48-56
Saad, N., Moustafa, M.E., and Chamieh, H.A., 2016.
Association of the extracellular superoxide dismutase
Ala40Thr polymorphism with type 2 diabetes mellitus
and its complications in Lebanese population. Int. J.
Genet. Mol. Biol. 8(1)1-6, January
DOI:10.5897/IJGMB2015.0115
Sari, M.I, and Sari, D.I., 2017. Nutrient
Intake, Apolipoprotein A5 -1131T>C Polymorphism
and Its Relationship with Obesity Materials Science
and Engineering 180. 012094 Doi:10.1088/1757-
899X/180/1/012094l011001
Sari, M.I
a
., Sari, N., Darlan, D.M., Prasetya, R.J., 2018.
Cigarette Smoking and Hyperglycaemia in Diabetic
Manganese Superoxide Dismutase Gene Ala16Val Polymorphism in Pulmonary Tuberculosis Patients with Diabetes at Balai Pengobatan
Lung Disease, Medan City
603